Personal Guide For: Product category: 05 - Measurement, testing and control technology

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1 MyCatalog Personal Guide For: Product category: 05 - Measurement, testing and control technology Messe Düsseldorf GmbH Postfach Düsseldorf Germany Tel. +49 (0)211 / Fax +49 (0)211 / Search Criteria: - Exhibitors with address and hall location - Hall map for each exhibitor - News / Product News - Product groups with descriptions and illustrations Messe Düsseldorf

2 MyCatalog MyCatalog TABLE OF CONTENTS Exhibitor Overview Advanced Control Solutions, Inc Agr International Inc AudioDev GmbH Bentrup Industriesteuerungen bitec GmbH, Büro für Informationstechnik Bock Energietechnik Bohle AG Busch & Spreen GmbH Buss & Partner GmbH CD Automation S.r.l Cognex Datapaq GmbH DIAS Infrared GmbH Dr. Schenk GmbH, Industriemesstechnik EASY AUTOMATION S.r.l Emhart Glass SA Eurotherm Deutschland GmbH Eurotron Instruments S.p.A Fenetech Inc FOR.EL S.p.A Fraunhofer-Institut für Informations- und Datenverarbeitung IITB Gedevelop AB Glass Service Inc Glass Technologies S.r.l Glasstress Ltd Glaston Corporation Graphikon GmbH Grenzebach Maschinenbau GmbH Gronemeyer Maschinenfabrik GmbH & Co HEITRONICS, Infrarot Messtechnik GmbH HELANTEC GMBH Messe Düsseldorf 2120

3 MyCatalog MyCatalog HunterLab, FMS Jansen GmbH & Co. KG i2s Linescan ilis GmbH IMPAC Infrared GmbH InSystems Automation GmbH ISRA SURFACE VISION GmbH Land Instruments, GB der Ametek GmbH LiteSentry Corporation MARPOSS GmbH MICRO-EPSILON Messtechnik GmbH & Co. KG Mipec AG MSC INSPECTION WORLDWIDE Nedo GmbH & Co. KG Nirvana Technologies (P) Ltd OB Vision GbR Olivotto Glass Technologies S.p.A OPOS, Optische On-line Sensoren Optima S.r.l Optische Prüfsysteme Dr. Günther OSAI S.p.A Precitec Optronik GmbH Prodim International B.V R.O. Srl Raytek GmbH SGCC Inspection Worldwide Siemens AG, Industry Sector Smart-Builder Software Softsolution technical software products GmbH Solartron Metrology Division, AMETEK GmbH Sparklike Ltd Strainoptics, Inc SVA - Industrie Fernseh GmbH Symplex Vision Systems GmbH tec5 AG Tempsens Instruments Put Ltd VERTECH' Viprotron GmbH Virmax S.r.l Visiglas VMA Gesellschaft für visuelle Messtechnik, und Automatisierung mbh XPAR Vision B.V Zeiss MicroImaging GmbH, Carl Fairground Map Hall Map Advanced Control Solutions, Inc. Address 8750 Resource Park Drive Sylvania, OH USA Telephone Fax Internet Address Booth Hall 13 E Measurement and control of glass temperature Measurement and control of glass temperature Traditional PID Control Strategy PID control is applied to loops that typically have fast response times. Traditional PID control works on error from setpoint. For example, in a forehearth, a sensor is placed at the exit of each forehearth zone to measure glass temperature as it exits the zone. The sensor relays data to a PID controller, which adjusts the heat in an attempt to bring the glass temperature back to setpoint. As the molten glass travels through each forehearth chamber, respective controllers continue to play catch up. The result tends to be a lengthy recovery time, during which production values 2008 Messe Düsseldorf 2121

4 MyCatalog MyCatalog decrease.. Agr International Inc. Address 615 Whitestown Road Butler, PA USA Telephone Fax Internet Address Booth Hall 12 C Measurement and control of glass thickness Surface, contour and imperfection measurement and control Measuring devices to be used on site Control and automation technology Controls for glass inspection machines Inspection, protocolling and diagnostic systems Process control systems Measurement and control of glass thickness Performs a variety of torque-related tests with one system Verifies capping head performance Tests cap torque without breaking the seal or losing carbonation. The Twist Check analyzer is a high-precision, automatic testing instrument designed to determine the force associated with the removal or application of a container cap or closure. The Twist Check can automatically perform a wide variety of industry-specific tests including: Features Multiple test modes Automatic peak torque latching Removal and reapplication capabilities One-touch, hands-free testing Simple keypad programming Automatic testing and Surface, contour and imperfection measurement and control Finish Coating Measurement System Detect the presence of coatings in the finish region. Measure coating thickness with a fast, reproducible, and repeatable method. Identify coating problems The Finish Coating Measurement System is a precision testing instrument designed to quickly and accurately identify the presence and concentration of metallic coatings on the finish region of a glass container. Features Optimised head design for measuring intricate finish regions Automatic head positioning Touch screen operation Ability to measure tin or titanium dioxide coatings Automated fluid pump Fill Height Tester Inspection, protocolling and diagnostic systems Twist Check 2008 Messe Düsseldorf 2122

5 MyCatalog MyCatalog Eliminates the need for manual fill height measurement Improves testing reproducibility and repeatability Measures fill height and brimful in one operation The Fill Height Tester is a precision testing instrument designed to automate the task of volume and brimful measurement. With the touch of a button, the Fill Height Tester automatically performs: Features: One-step testing Temperature and water density compensation User-defined fill height volume Robust, at-the-line design Fill Height Volume Brimful Weight Quality assurance with high precision High productivity requires appropriate process equipment combined with efficient inline and offline quality assurance systems. In order to optimize the production process, which means balancing highest throughput and defined quality, precise measurements are of key importance. AudioDev offers a complete family of ETA inline and offline measurement systems. Based on the core competences in Spectrometry and Laser Technology, the measurement systems generate the most precise measurements. Most systems are turn-key solutions equipped with state-of-the-art hardware and software modules, designed for easy operation. ETA-systems belong to the most efficient and reliable process control systems installed at manufacturing facilities worldwide. AudioDev GmbH Bentrup Industriesteuerungen Address Borsigstr Heinsberg Germany Telephone Fax Internet Address Booth Hall 12 E02 Address Zum Buchwald Fernwald Germany Telephone Fax Internet Address Booth Hall 9 A Measurement and control of glass colour Detectors for laminated glass Measurement and control of glass colour ETA physical test systems Control and automation technology Control and automation technology Regelanlagen Begegnen Sie der neuen bentrup Kompaktserie um zu sehen, was bislang auf dem Markt befindliche Regelanlagen vermissen ließen: Die neue bentrup Kompaktserie liegt in Ihrer Hand und besticht durch Perfektion im Detail. Hellrote, kontrastreiche Anzeige, extrem flache Bauform, ergonomisch geformtes Gehäuse, ein gewinnendes Frontdesign und im 2008 Messe Düsseldorf 2123

6 MyCatalog MyCatalog Inneren überlegene Technik. Für die Bedienung reicht eine Hand. Nach dem Einstellen der Brennkurve legen Sie den Regler zurück in die neue Click-On Wandhalterung aus Edelstahl so perfekt wie der Regler selbst. Im Gehäusedesign versteckter Netzschalter und von außen zugängliche Sicherung, AutoTune Regelcharakteristik, Event-Log-Fehlerspeicher, frei konfigurierbares Thermoelement, beliebige Netzspannung und Fahrenheit/Celsius-Umschaltung für den weltweiten Einsatz, Präzision, Innovation und Überbrennsicherheit für die bentrup sprichwörtlich steht. bitec GmbH, Büro für Informationstechnik Erweitertes Druckmodul Komplexe Lagerdisposition und Agenturbestellung Elektronische Zeiterfassung (TOWITOKO) Komplexe Vor- und Nachkalkulation Bilderrahmenkalkulation Fensterkalkulation Ganzglasanlagen (GGA) Glasdickenberechnung (ÜKO) Datenimportmodul Zuschnittoptimierung (PLAN-IQ) Versand- / Fertigungssteuerung Dateiarchiv Address Rosmarinstr Chemnitz Germany Telephone Fax Internet Address Booth Hall 9 A Other control systems Other control systems Versas Das VERAS-Softwarepaket bietet bereits in der Basisversion eine konkurrenzlose Ausstattung mit Funktionen sowie anwendungsbereiten Stammdaten und Preislisten. Als durchgängige kaufmännische und technische Softwarelösung enthält VERAS alle notwendigen Funktionen für den Einsatz im Glashandwerk und der Glasverarbeitung. Beliebig aufrüstbar mit zahlreichen Zusatzmodulen erweitert sich das Einsatzgebiet ebenso auf den Glashandel, den Glasbau oder den industriellen Einsatz. Zusatzmodule - In Form von zusätzlichen (separaten) Programm Kundenindividuelle und Objekt-Festpreise Bock Energietechnik Address Gösen Floß Germany Telephone Fax Internet Address Booth Hall 13 A Forehearth technology Smelting technology for tank furnaces Electrically heated systems Textile glass fibre technology Annealing lehrs, continuous/intermittent operation Decorating lehrs Measurement and control of glass position detection Measurement and control of glass temperature Control and automation technology MRP/CAD/CIM systems Process control systems 2008 Messe Düsseldorf 2124

7 MyCatalog MyCatalog 06 Contracting, consulting, engineering Measurement and control of glass position detection Glasstandmessung - Typ TSM Ein bewährtes Messprinzip - aufgerüstet mit intelligenter Software und High-Tech-Messverfahren Die Steuerung und Auswertung ermöglicht eine hohe Messgenauigkeit und eine vielfältige Anwendung - auch bei engen Platzverhältnissen durch Decke oder Seitenwand. Technische Daten: - Versorgungsspannung 230 V / 50 Hz - Automatischer Wiederanlauf bei Stromausfall - Umgebungstemperatur: Tasteinheit 85 C; Auswerteeinheit 65 C - Messgenauigkeit 0,1 mm - Ausgänge 0/ ma ; 2 Kontaktausgänge für Alarme - Profibusanbindung möglich Besondere Vorteile: - robuste Ausführung - einfacher Einbau und Bedienung - niedrige Kosten Bohle AG Address Dieselstr Haan Germany Telephone Fax Internet Address Booth Hall 9 D Cutting technology for float glass Cutting technology for laminated safety glass Cutting technology for technical glass Mechanical snapping devices Drilling technology Grinding techniques for straight edges Grinding techniques for patterned glass Grinding techniques for formed glass Matting/Supercalendering/etching/sand blasting technologies UV edge taping technology Water treatment for grinding technology Washing machines and equipment Chemical protection material for glass Chemical cleaning agents Waste water treatment Components and accessories (suppliers to the glass machinery industry) Brackets and fittings Machinery/tools Functional fittings and brackets Grinding technology Renovation and cleaning of erected glass Coating of flat glas Coating of sand-blasted glass Mechanical tools Electromechanical tools Cutting, grinding and drilling tools Handling tools, hand-guided Replacement part, wearing parts Protection devices Brackets for glass applications Adhesive technology Measuring devices to be used on site Detectors for laminated glass 2008 Messe Düsseldorf 2125

8 MyCatalog MyCatalog COMPANY NEWS Whilst in the past fittings were viewed as a necessary evil for fastening glass, today different technologies make it possible to create solutions for the various functions of fittings - solutions that are not only intelligent but also design orientated. Therefore, over the past few years, Bohle has developed a comprehensive range of fittings for glass. With the newest additions to the product range, the company now offers the right fitting solution for practically every application. Bohle Studio Fittings for Interior Doors Bohle studio fittings for interior doors are the ideal complement for all-glass interior doors. The special features of the material glass are enhanced by the elegant design of the fittings. And in this respect Bohle does not limit themselves to a single fitting. Instead, transparency and the character of the design are meant to transcend the entire object while still allowing room for individual configurations. Bohle offers several modules in the form of diverse locks, hinges and door handles in three different finishes. Technical Details Locks are suitable for left or right use Single-turn / 18 mm bolt projection Tested on the basis of DIN class 3 (Cycles: 200,000 latching actions via door handle / 50,000 latch actions via cylinder locking function) Suitable for 8-10 mm glass (tempered safety glass) Suitable for Bohle door handles, with special handle guide Also suitable for door handles with 16 mm projection Stainless steel M6 screws, installation in door frames per DIN 18101/18111 Bohle Sliding Door Hardware by Hawa The new Bohle sliding door fittings by Hawa offer fascinating application possibilities. Different fitting sets offer the right solution for every application. Sliding Door Hardware Set B1 The sliding door hardware set B1, in combination with the clamping rail, is suitable for all-glass sliding doors up to 80 kg and glass thicknesses of 8 mm, 10 mm, 12 mm (12.7 mm). With the clamping rail all-glass sliding doors can be mounted without glass processing. Thus customer wishes can be realised quickly and flexibly. Sliding Door Hardware Set B2 The sliding door hardware set B2, with cover plates, top tracks and angle profiles with plain anodised finish or stainless steel look, fits beautifully in every contemporary interior. The bottom guides are free of play, ensuring smooth, easy sliding and preventing the doors from rattling when there are draughts. Bohle B2 is easy to install and absolutely dependable. The dry glazing system requires simple drilling in the glass. The positive fitting glass fixing (patent applied for) ensures lasting reliability in use, even under maximum load. Aluminium cover plates for the slim glass retention profile fit easily, using rubber clips. Sliding Door Hardware Set B3 With its elegant glass fixings and guides, the sophisticated B3 hardware opens new dimensions in transparent room designing for architects and interior designers. Its installation also features many advantages: The mounting suspension is attached from the inside, offering protection against break-ins. The countering of the suspension screw in the fitting results in an especially minimal installation height. In addition, the adjustment of the glass sliding door is especially simple because the height can easily be adjusted from the inside. Technical Details Maximum weight of sliding door 80 kg Maximum width of door 1200 mm Glass thickness of sliding door: tempered glass 8 / 9.5 / 10 mm Profile height 65 mm Positive-fitting glass fixing for maximum safety and reliability Smooth, quiet running Track stop with adjustable retainer Height adjustable without removing the glass door Cover plates in various anodised finishes Rattle proof floor guide for glass sliding doors Simple installation Can be combined with Bohle door handles Sliding Door Hardware Sets B100 and B150 The sliding door hardware sets B100 and B150 offer transparency through complete integration. These fittings are suitable for all-glass sliding doors (tempered/laminated safety glass) with concealed suspension and a door weight up to 150 kg and are ideal for rooms where glass/glass or glass/wood combinations are used as room partitioning and design elements, not only in hotels, restaurants, conference rooms and administration buildings, but also for private interior design, especially in lofts with suspended ceilings.high-quality ball bearing technology built into the system s trolleys allows you to slide doors smoothly and quietly along anodised top tracks. And assembly is made simple by benefits such as punctiform, rattle-proof, floor-mounted guides, centric glass suspension and the new, patent-pending wedge suspension. A further plus are removable additional profiles for quick and easy dressing and integration of fixed elements made of glass, wood or other materials. Technical Details Maximum door weight 4-wheels 100 kg Maximum door weight 6-wheels 150 kg Minimum door width 750 mm Trolleys with high-quality ball bearing technology Glass retention and wedge suspension technology integrated in the top track Ceiling joint profiles for suspended lightweight ceilings Form-fitting suspension of glass doors in the slide axis Additional profiles removable from below Glass thickness sliding door: Tempered safety glass 8 /10 /12 /12.7 mm Laminated glass made of tempered glass 8-13 mm Glass thickness stationary glass 2008 Messe Düsseldorf 2126

9 MyCatalog MyCatalog tempered/laminated glass: mm (with silicone up to 13 mm) Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Excellent products at excellent prices - this is the main focus of the new brand name Vetrocraft, under which Bohle will launch products with especially good value for money. The first products to be introduced in the Bohle value line are straight line edgers for efficient grinding, arrissing and polishing of glass edges. Premium edge quality with minimum investment requirements is the message conveyed by this offer. The product series includes four fully automatic machines with four, six, eight or nine spindles as well as a manual machine with four spindles. Despite unbeatable prices these new edge grinding machines are equipped with every possible feature for quick and precise grinding and polishing of edges and arrisses. All machines include a stainless steel coolant circulation system as standard and fully automatic machines are equipped with a convenient touch-screen display that allows all necessary parameters to be set and monitored. The technical parameters are also very convincing: Vetrocraft edge grinding machines process glass panes from 3-28 mm thick weighing up to 300 kg with dimensions between 80 x 80 mm and - depending on the model - up to 2000 x 3000 mm. The feed speed is infinitely adjustable from 0.8 to 3 metres per minute. For all small to medium-sized glass processing companies, the Vetrocraft straight line edgers allow a reasonably priced introduction to automatic edge processing and a genuine alternative to other processing methods in respect both to quality as well as price. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: 2008 Messe Düsseldorf 2127

10 MyCatalog MyCatalog Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login With the Verifix Airstream series, the Bohle Group, Europe's leading manufacturer and supplier of tools, machines and accessories for glass processing and finishing, introduces an innovative series of kilns for manufacturing laminated safety glass in an autoclave-free process. The process, which is also familiar in the manufacturing of display or photovoltaic modules, has been conceptually revised and improved by Bohle in recent years. The kiln technology, in particular, has been significantly sophisticated and processes stabilized ( track & trace option ) for use in the structural and automotive glass industries. Low investment required The very low investment required in comparison to classic autoclaves is just one of its many advantages. With the Verifix Airstream series, it is now also possible for small and medium-sized glass processors to produce laminated glass without autoclaves or climate chambers. The efficient and controlled processes have been developed and tested by Bohle to industrial standards. The precise convection technology has proven to be an outstanding basis both technically and economically. The entire process is distinguished by high productivity and very low investment costs. Production of totally new glass products The physical and chemical properties of the materials used in this process also make the production of totally new glass products possible. Laminating materials such as EVA, PVB, AF and TPU exhibit very good parameters in this process. EVA (ethylene vinyl acetate), for example, can also be stored and processed at room temperature and it is worth mentioning that EVA is not only unaffected by moisture, but also adheres exceptionally well to glass and numerous other components like polyester, fabric, steel, stone, wood, paper, etc., which opens a wide range of applications. New market opportunities for glass processors This technology opens numerous innovative and technically sophisticated market opportunities for glass processors. Examples of typical products that can be produced with the aid of the Verifix Airstream kilns are glass design elements with printed or coloured films or special papers on the inside for interior settings or creative shopfitting, combinations of glass with steel, stainless steel or wood for premium furniture construction or elements for building fronts and balustrades, laminated safety glass made of tempered or semi-tempered glass or glass with technically sensitive function films like LED or LCD films (liquid crystal) or even embedded photovoltaic elements. Beyond this, the Verifix Airstream technology offers a wide spectrum of innovative glass finishing possibilities for all creative manufacturers of multi-functional laminated glass. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( 2008 Messe Düsseldorf 2128

11 MyCatalog MyCatalog text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Busch & Spreen GmbH Address Rudolf-Diesel-Str Nienburg Germany Telephone Fax Internet Address Booth Hall 13 B Surface, contour and imperfection measurement and control Controls for glass inspection machines Surface, contour and imperfection measurement and control Inspektions- und Sortiermaschine ISM Mit der ISM können folgende Messungen durchgeführt werden Planität Dichtigkeit Höhe/Innenkaliber und Außenkaliber Mündungsrisse Bodenrisse Wandstärke (berührend) Wandstärke (optisch-berührungslos) Mündungsoberfläche Ovalität am Körper Formnummernlesung (DOT-Code) Formnummernlesung (Klarschrift) Die ISM verfügt über die elektronische Steuerung GPM, die bereits in mehreren hundert Glasprüfmaschinen integriert ist ein Antriebssystem mit Servomotortechnik Rissmessung durch Lasertechnologie eine von Flaschenmaßen und Anzahl der Stationen im Stern abhängige Maschinengeschwindigkeit von bis zu 400 Flaschen/Minute einen schwenkbaren 17"-TFT-Monitor mit großer Tastatur und weiteren Bedienelementen eine umfangreiche Steuerungssoftware (kein Windows-Betriebssystem) einen staubgeschützten und klimatisierten Elektrik-/Elektronikbereich 330 mm Arbeitsradius und bis zu 4 Rotationsstationen Anschluss für bis zu 4 externe Stausensoren am Schaltschrank synchrone Start- und Bremsrampensteuerung für alle Antriebe (Bandmotor, Hauptantrieb, Rotationsantrieb, Trommelstabilisierung, Einlaufvereinzelung) schnelle NOT-Stop-Bremsrampe über Frequenzumrichter und damit kein Austrudeln der Antriebe elektromagnetische Verträglichkeit (EMV) 2008 Messe Düsseldorf 2129

12 MyCatalog MyCatalog Die Elektronik der ISM gewährleistet die Netzwerkfähigkeit für die Kommunikation mit anderen Glasprüfmaschinen und/oder diversen Linieninformationssystemen. Buss & Partner GmbH Address Habsburger Platz München Germany Telephone Fax Internet Address Booth Hall 13 C Measurement and control of glass thickness Measurement and control of glass temperature Inspection, protocolling and diagnostic systems Measurement and control of glass temperature TC 24/7 This new project will provide a system for permanent temperature measurement and control on an IS machine. The system will be capable of measuring all plunger and blank mould temperatures. Within less than 10 minutes all measurements on an 8 section double gob machine are completed, whilst providing a repeatability of better than 3 C. A smaller, portable system for temperature control is our IPMS. More information: Inspection, protocolling and diagnostic systems PC 24/7 and POD100 The PC 24/7 (Pressure control 24 hours a day 7 days a week) is an innovative process control system for permanent pressure control in the final blowing operation on an IS machine. The proven system is the only of its kind available to the glass container industry. Furthermore the PC 24/7 can easily be adapted to monitor and control the plunger cooling and/or plunger forming pressure. The POD100 is a small, portable device for measuring the final blow pressure. Link zu weiterer Information Measurement and control of glass thickness Conversion Kit for Non-Round Containers A pneumatical device, developed in a German glass container plant is now manufactured and available to the industry through: Dr. Martin Buss & Partner GmbH. This kit enables a stable handling of non-round containers, by modifying the drive side of the AGR On-Line Thickness Machine. This unique drive improvement, provides constant contact between the side walls of the non-round container and the capacitive sensing strips, ensuring a true detection. This inspection focuses on the weak areas of selected non-round ware, within the tolerances of the OLT. Link zu weiterer Information CD Automation S.r.l. Address Via Picasso, 34/ Legnano (Mi) Italy Telephone Fax Internet Address Booth Hall 9 E Control and automation technology 2008 Messe Düsseldorf 2130

13 MyCatalog MyCatalog Control and automation technology REVO Innovativer und modularer Thyristorregler Ist es Zeit für Innovationen? Ja, die Lösungen in der industriellen Regeltechnik haben sich stark verändert, nicht so der Temperatur Regelkreis. Es ist immer noch dieselbe Verdrahtung und Montage von Regler, Solid State Relais, Sicherung, Halter und Stromwandler wie vor vielen Jahren. Unsere Idee ist es diesen Regelkreis vom Konservativismus zu befreien. REVO überzeugt mit eindrucksvoller Funktion was moderne Technik und Design ermöglicht. Was bietet REVO? Modulare Komponenten Konfigurierbarkeit für höhere Leistungsfähigkeit Das Potential, die Arbeits- und Montagekosten um bis zu 50% zu senken Auf Prozesswissen basierende Innovationen Weltweiter Support von geschulten und multinationalen Partnerfirmen Eine dynamische Organisation für kundenorientierte Lösungen REVO ist ein System und nicht einfach ein Produkt! Alle Komponenten der Temperaturregelzone sind enthalten Das modulare und skalierbare Design machen auch komplexe Anwendung möglich Montage und Verdrahtungskomponenten sind integriert Es ist ein Kernprodukt für die Automatisierung Kommunikationsfähigkeit über Tastatur und PC sind integriert Das Lastmanagement (MPM) reduziert Lastspitzen, Leistungsfaktor und Kosten MPM optimiert Mehrzonen-Heizsysteme belastungsmäßig. Diese leistungsfähige Prozessoreinheit mit dem speziellen Algorithmus ermöglicht Ihnen die Energiekosten zu reduzieren. Durch eine kontrollierte Synchronisation und individuellen Leistungsbegrenzung wird das Sparpotential freigegeben. Verhinderung von Leistungsspitzen. Verbesserung des Leistungsfaktors gegen 1. Die Momentanleistung wird immer innerhalb der Versorgungsgrenzen gehalten, das verhindert teure Spitzenlast kaufen zu müssen. MPM verhindert die Spitzenlast bevor sie entsteht. Kurze Amortisationszeit der Investition. Thyristorstack, Powercontroller, Temperaturecontroller REVO Multizonen Lastmanagement 2008 Messe Düsseldorf 2131

14 MyCatalog MyCatalog COMPANY NEWS Ist es Zeit für Innovationen? Ja, die Lösungen in der industriellen Regeltechnik haben sich stark verändert, nicht so der Temperatur Regelkreis. Es ist immer noch dieselbe Verdrahtung und Montage von Regler, Solid State Relais, Sicherung, Halter und Stromwandler wie vor vielen Jahren. Unsere Idee ist es diesen Regelkreis vom Konservativismus zu befreien. REVO überzeugt mit eindrucksvoller Funktion was moderne Technik und Design ermöglicht. Was bietet REVO? Modulare Komponenten Konfigurierbarkeit für höhere Leistungsfähigkeit Das Potential, die Arbeits- und Montagekosten um bis zu 50% zu senken Auf Prozesswissen basierende Innovationen Weltweiter Support von geschulten und multinationalen Partnerfirmen Eine dynamische Organisation für kundenorientierte Lösungen REVO ist ein System und nicht einfach ein Produkt! Alle Komponenten der Temperaturregelzone sind enthalten. Das modulare und skalierbare Design machen auch komplexe Anwendung möglich Montage und Verdrahtungskomponenten sind integriert Es ist ein Kernprodukt für die Automatisierung Kommunikationsfähigkeit über Tastatur und PC sind integriert Das Lastmanagement (MPM) reduziert Lastspitzen, Leistungsfaktor und Kosten Service Linksnach obendatenschutznutzungsbedingungenseite druckenseite empfehlen Messe Düsseldorf Mehr Informationen Suche Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident-Nr.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Standauftrags-Nr.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login für Aussteller Ident-Nr.: Standauftrags-Nr.: Passwort: Fragen zum Passwort und zum OOS? Tel.:+49/ Online-Support für Besucher & Presse Login: Passwort: Passwort vergessen? Benutzerkonto einrichten Pressezugang beantragen Cognex Address One Vision Drive Natick, MA USA Telephone Fax Internet Address Booth Hall 15 C Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control Cognex SmartView Cognex SmartView surface inspection systems enable you to detect, identify, and visualize defects on the surfaces of products that are manufactured in a continuous fashion such as metals, paper, plastics, and nonwovens Messe Düsseldorf 2132

15 MyCatalog MyCatalog In today's highly competitive marketplace, increasing demands are being placed on manufacturers to improve efficiency and increase productivity. As you run your lines at faster speeds, you consequently risk an increase in the occurrence of defects. You need a cost-effective solution that provides you with the maximum return-on-investment. In today's highly competitive marketplace, increasing demands are being Cognex can meet your needs. In today's highly competitive marketplace, increasing demands are being With over 20 years of experience in challenging machine vision applications, Cognex uses the right combination of lighting, image acquisition, and image processing software to suit your application. Only Cognex's advanced inspection technology ensures real-time detection of defects on your strip or web surfaces, while our special surface inspection software can be easily configured to provide unparalleled, automatic identification and visualization of your surface defects. Datapaq GmbH Address Valdorfer Str Vlotho Germany Telephone Fax Internet Address Booth Hall 12 E Accessories Measurement and control of glass temperature Beim Tempern und Verbinden von Bildschirmen und Glaskolben sollte im gesamten Prozess und über das gesamte Kühlofenband eine gleichmäßige Temperatur herrschen. Es ist sicherzustellen, dass die Schmelztemperatur des Glaslots innerhalb der Spezifikation liegt und am äußeren Rand des Bildschirms gleichmäßige Temperaturen erzielt werden. Außerdem ist zu gewährleisten, dass in den Kühlzonen die kritischen Abkühlungsgeschwindigkeiten eingehalten werden. Was bedeutet Profilaufzeichnung? Datapaq ermöglicht mit seinem Temperaturmess-System für Kühlöfen die Aufzeichnung von präzisen und umfassenden Temperaturprofilen Ihrer Bildschirme und Glaskolben während sie sich im Ofen befinden. Durch die regelmäßige Temperaturüberwachung können Sie korrekte Prozessbedingungen schaffen und somit Probleme und Ausschuss vermeiden. Das System von Datapaq umfasst einen programmierbaren Datenlogger, einen Hitzeschutzbehälter aus hochwirksamem Isoliermaterial, Thermoelemente zur Erfassung der Produkttemperaturen und die Insight-Analysesoftware. Um die tatsächliche Produkttemperatur während des Prozesses zu überwachen, durchläuft das System zusammen mit dem Produkt den Ofen. Die gespeicherten Daten können anschließend mit Hilfe der Insight-Software analysiert und zur Optimierung der Temperaturprofile herangezogen werden. Mit dem telemetriefähigen Furnace-Tracker-System haben Sie die Möglichkeit, sich die erfassten Temperaturwerte in Echtzeit anzeigen zu lassen. Noch nie war die Aufzeichnung von Temperaturprofilen so einfach wie heute. Und falls Sie Fragen haben, hilft Ihnen unser Service- und Supportteam gerne weiter. Vorteile: Gewährleistung einer gleichmäßigen Produkttemperatur über das gesamte KühlofenbandEinhaltung der Spezifikation hinsichtlich der Schmelztemperatur des GlaslotsGewährleistung gleichmäßiger Temperaturen am äußeren Rand des BildschirmsEinhaltung der kritischen Abkühlungsgeschwindigkeiten in den KühlzonenErkennung heißer und kalter Stellen im Ofen bzw. Feststellung einer ungleichmäßigen TemperaturverteilungAusdruck von Protokollen zu Qualitätssicherungszwecken Measurement and control of glass temperature Tempern und Verbinden von Bildschirmen und Glaskolben 2008 Messe Düsseldorf 2133

16 MyCatalog MyCatalog DIAS Infrared GmbH Dr. Schenk GmbH, Industriemesstechnik Address Gostritzer Str Dresden Germany Telephone Fax Internet Address Booth Hall 13 C81 Address Einsteinstr. 37, Martinsried Planegg Germany Telephone Fax Internet Address Booth Hall 12 C Measurement and control of radiation in the melt Measurement and control of glass temperature Measurement and control of glass temperature Pyrometer PYROSPOT Serie 40 Mit unseren Pyrometern PYROSPOT Serie 40 bieten wir Ihnen digitale 2-Leiter-Pyrometer zur berührungslosen Temperaturmessung für industrielle Anwendungen: Messbereiche von 30 C bis 2500 C Angepasste Spektralbereiche für unterschiedliche Pyrometer-Applikationen Festoptiken mit einem Messfelddurchmesser ab 1,1 mm, optional Lichtwellenleiter Temperaturlinearer Ausgang 4 bis 20 ma USB-Schnittstelle zur Pyrometer-Parametrierung und Datenauswertung Robustes Edelstahlrundgehäuse mit Steckeranschluss, Durchmesser 40 mm, Schutzgrad IP 65 LED- oder Laser-Pilotlicht Komfortable Auswerte- und Parametriersoftware PYROSOFT Spot Produktübersicht Pyrometer PYROSPOT Serie 40 (PDF-Datei) Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control GlassInspect for Float Glass Inspection The modular inspection and process control system for float and rolled glass is easyly integrated into production lines. The illumination and camera concepts as well as the defect classification has been optimized for the defect detection of float glass. Link zu weiterer Information GlassInspect for Sheet Glass Inspection The sheet glass inspection system GlassInspect is based on a unique high-resolution camera and bright LED illumination technology. GlassInspect for Sheet Glass is a modular optical system capable of inspecting all panel sizes and types, including bare glass substrates, coated glass, laminated glass and OLED structures. A variety of resolution ranges is provided by the Dr. Schenk glass sheet inspection system in order to accommodate customer specific manufacturing and inspection environments. Link zu weiterer Information 2008 Messe Düsseldorf 2134

17 MyCatalog MyCatalog Inspection of Glass Edges Chess.edge from Dr. Schenk's product family GlassInspect is a modular system for the inspection of materials produced or converted as sheet material. The main task is the detection of defects that can occur during: edge grinding and corner cutting of bare glass e.g. for the production of flat panel displays glass processing e.g. for solar glass production Link zu weiterer Information COMPANY NEWS Dr. Schenk ready for the PV market and new glass processing technologies: Growing focus on structured and unstructured solar glass as well as on coated and laminated glass Enhanced defect classification for higher yield in float glass manufacturing: Remarkable evolution as result of two years successfully selling float glass inspection to the industry Dr. Schenk GmbH based near Munich, Germany is worldwide leading in the development, production and marketing of automated vision and inspection systems for glass as well as for plastic, film, foil and solar panels. At this year s, Dr. Schenk will set its emphasis at a new inspection demand in the glass industry: Suppliers for the photovoltaic industry as well as manufacturers of coated and laminated glass experienced an immense growth during the past year. As a consequence, the demand for inspection systems specialized for the requirements of these glass processing technologies rises, too. Among other developments in 2008 Dr. Schenk has launched the following new product enhancements, which will be the focus at this year s : An advanced inspection and measurement system for glass sheets that are used as substrate for thin film solar modules. Here especially scratches, bubbles and edge defects might have costly consequences if not detected, as e.g. glass breakage in further processing. For rolled, structured glass a unique optical set-up specializes on the distinguishing of critical material defects from the glass structure common to the cover glass of silicon solar panels. Coated and laminated glass has become more and more important for a growing number of high tech applications, as e.g. in the PV industry (AR, TCO or Molybdenum coatings on solar panels) or for the architectural and automotive industry (low-e coating or lamination for fire protection and safety glass). The volume growth of glass coatings and laminations as well as the boost in the PV industry has created a business uplift for glass panel inspection systems at Dr. Schenk. However, at the same time, the automated vision systems for float glass have also experienced a remarkable evolution. In close cooperation with business partners and customers the R&D team has developed an enhanced defect classification for float glass. The inspection system GlassInspect.float enables manufacturers to distinguish between glass defects, such as bubbles or stones that can cause problems during further processing, from dust or other pseudo defects. In order to make this distinction, Dr. Schenk makes use of the characteristics of defects versus contaminations. Whereas the optical signal of a non critical contamination consists of its pure core size, a real glass defect occurs with a much larger distortion image. Using the innovative combination of two illuminations the GlassInspect systems deliver pin sharp gray scale images of defect core and its distortion. Furthermore, by this optical concept the size of a defect can be evaluated with highest accuracy. Thus, the boundary between critical defects and non-critical defects can be set with an unreached precision. A number of float glass manufacturers in Europe and Asia have therefore chosen 2008 Messe Düsseldorf 2135

18 MyCatalog MyCatalog inspection solutions from Dr. Schenk. Visit Dr. Schenk at 2008 Hall 12 Booth C25 and get to know the vision system GlassInspect and how it meets the new challenges of quality assurance in the glass industry. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login EASY AUTOMATION S.r.l. Address Via di Dragoncollo, Roma / RM Italy Telephone Fax Internet Address Booth Hall 12 A Control and automation technology Control and automation technology Our Product Electrical Control Machine of the backlight defrosting circuit by magnetic field measurement The machine for the electrical control (ECM) is a turn-key machine able to perform all the following works Electrical resistance measurementovervoltage (from 0 to 36 volts)check of the wire continuity with detection of the magnetic field without contact The main characteristics are: Close wire detection (less than 10 mm)very low cycle time, continuity can be checked in less than 0.5 sec.parallel detection of up of 4 independent circuitsresistance calibration certificateprint room full interfacesstatistical report Devicenet and Ethernet line connections 2008 Messe Düsseldorf 2136

19 MyCatalog MyCatalog Emhart Glass SA Address Hinterbergstr Cham Switzerland Telephone Fax Internet Address Booth Hall 13 B Process control systems Plunger Process Control - PPC Next generation of plunger process control, a step towards process automationfull stroke motion tracking of Emhart Glass Quick Change Plunger Mechanisms with wireless sensor connectionprecise gob weight control with accurate tube height and needle height control algorithmsadvanced software supported process analysis including process data storage and automatic reject of containers with defects Gob feeder Shear blades Press-blow-machines Bottle and glass container machines Spray Systems for gob forming Mechanical tools Measurement and control of glass thickness Measurement and control of speed Surface, contour and imperfection measurement and control Controls for glass inspection machines Inspection, protocolling and diagnostic systems Process control systems 06 Contracting, consulting, engineering MiniLab Measurement and control of glass thickness 2008 Messe Düsseldorf 2137

20 MyCatalog MyCatalog COMPANY NEWS 1. Einleitung Ein wichtiger Schritt bei der Hohlglasherstellung ist das Pressen des Glases mit einem sogenannten Pegel. Da dieser Pegel in direktem Kontakt mit dem etwa 1100 C heissen Glas ist, erfährt er eine enorme Wärmebelastung und muss gekühlt werden. In der Praxis erfolgt die Kühlung mit Luft, die über ein mit Löchern versehenes Kühlrohr an die Pegelinnenseite geführt wird. Diese Studie bescheibt die Entwicklung und die Validierung eines 3D Berechnungsmodells, das die Massenstrom- und Temperaturvetrteilung im Pegel/Kühlrohrsystem abbildet. Mit diesem Modell werden die entscheidenen Designparameter des Pegel/Kühlrohrsystems bestimmt. Die Arbeit wurde im Rahmen eines IPGR (International Partners in Glass Research) Projektes angefertigt. Die IPGR ist ein internationaler Zusammenschluss von zur Zeit sieben Glashütten. Neben einer engen Kooperation in hüttenübergreifenden Projekten werden auch forschungsnahe Projekte gefördert. Im Rahmen dieses IPGR Projektes wurden sowohl ein stationäres als auch ein instationäres Modell entwickelt. Die Darstellung beschränkt sich hier auf den stationären Teil. Als erster Schritt der Modellentwicklung werden die notwendigen Randbedingungen formuliert. Diese Bedingungen werden dann im kommerziellen CFD (Computanional Fluid Dynamics) Programm Fluent gesetzt. Fluent erlaubt dabei die gekoppelten Impuls und Energieerhaltungsgleichungen zu lösen. Dieses Modell wird in einem weiteren Schritt mit Laborversuchen validiert. Mit dem validierten Modell werden die Hauptfaktoren identifiziert, die die Massenstrom und Temperaturverteilung beinflussen. Dazu wird die Design of Experiment Methode verwendet. Auf diesen Erfahrungen basierend werden Vorhersagen und Optimierungsvorschläge für ein existierendes Design simuliert. Diese Simulationen werden in einem Feldversuch mit Messdaten verglichen. 2. Berechnungsmodell 2.1. Berechnungsprinzip Wie oben erwähnt basiert das Modell auf dem kommerziellen CFD Programm Fluent. Dieses Programm ist eine universelle Plattform zum Lösen von gekoppelten thermischen und strömungstechnischen Problemstellungen. Es beeinhaltet alle notwendigen Lösungsalgorithmen und spart daher Zeit beim Aufbau des Berechnungsmodells. Ausserdem reduziert die Verwendung die Fehleranfälligkeit bei der Programmierung. Um eine Problemstellung in Fluent zu definieren, ist es zuerst notwendig, die Geometrie und das Berechnungsgitter zu definieren. Zu diesem Zweck steht das Programm Gambit im Programmpacket Fluent zur Verfügung. Da die Geometrieerstellung und das Vernetzen zeitaufändig sind, werden diese Schritte auomatisiert. Das so erstellte Berechnungsgitter wird zum Fluent Löser transferriert. Um die gekoppelten Impuls-, Masse- und Energieerhaltungsgleichungen zu lösen, müssen die Bedingungen an den Rändern bekannt sein. Diese Bedingungen sind Benutzereingaben. Im vorliegenden Fall sind dies der Wärmeeintrag in den Pegel und der Druck am Eintritt und Austritt. Diese Bedingungen sind in Abbildung 1 verdeutlicht. Um Rechenzeit zu sparen wird ein Viertel des rotationssymmetrischen Pegels modelliert. An den Schnitten werden Symmetrierandbedingungen angesetzt. Abbildung 1 Geometrie und notwendige Randbedingungen des stationären Modells 2.2. Verwendete Randbedingungen Um die Strömungsregion (d.h. die Gleichungen zur Massen- und Impulserhaltung) zu definieren, müssen die Drücke am Eintritt und Austritt der Berechnungsgeometrie gesetzt werden. Der Auslass ist im Modell der Auslass des Pegels. Der Eintritt ist als Anfang des Kühlrohrs definiert. Die Energieerhaltungsgleichung benötigt Randbedingungen für den Wärmeeintrag auf allen Aussenflächen des Pegels und zusätzlich die Eintrittstemperatur der Luft Massen- und Impulserhaltung Wie oben beschrieben, müssen die Drücke am Ein- und Austritt definiert werden. Am Austritt wird angenommen, dass der statische Druck null ist. Das Problem mit dem Eintrittsdruck ist, dass nur der Druck am Ventil bekannt ist. Um das Rechenmodell auf eine handhabbare Grösse zu beschränken, fängt die Rechnung aber erst am Kühlrohreintritt an. Daher muss der Drucklust bestimmt werden, der auf dem Weg von Ventil zu Kühlrohreintritt abfällt. Der Druck am Kühlrohreintritt ist dann der Ventildruck verringert um diesen Druckverlust. Um den Druckverlust zu bestimmen wurden zwei Messreihen durchgeführt. In beiden Fällen wurde ein Drucktank (V=1.5m³, pmax = 5bar) verwendet, um einen Pegelmechanismus mit Luft zu versorgen. Dabei wurde der Massenstrom gemessen. Im ersten Experiment wurden eine typische Pegel/Kühlrohr Anordung montiert. Im zweiten Experiment wurde nur ein Pegel montiert. Der Druckverlust wurde nun wie folgt ermittelt: Bei einem bekannten Ventildruck wird der Massenstrom durch das Gesamtsystem (Mechanismus, Pegel, Kühlrohr) aus dem ersten Experiment bestimt. Mit diesem Massenstrom kann jetzt aus dem zweiten Experiment der Druckverlust durch den Mechanismus abgeschätzt werden. Dieses wird für verschiedene Ventildrücke wiederholt. Damit ergibt sich eine Auftragung von Massenstrom gegenüber Druckverlust, die in Fluent durch eine User Defined Function als Randbedingung implementiert wird Energieerhaltung Um die Energieerhaltungsgleichungen zu lösen, müssen die Wärmeeintrage an den Grenzflächen definiert sein. Dieses sind vor allem der Wärmeeintrag des Glases an den Pegel und die Eintrittstemperatur der Luft. Für die Lufttemperatur wird in den Simulationen typischerweise ein Wert von 40 C angenommen. Dieses stellt eine leichte Erwärmung der Luft im Mechanismus in Rechnung. Die Austrittstemperatur der Luft ergibt sich als Ausgabegrösse des Rechenmodells. Der Wärmeeintrag des Glases an den Pegel an den Kontaktfächen hängt von der Kontaktzeit von Glas und Pegel und von den jeweiligen Temperaturen ab. In früheren internen Emhart Glass Studien wurde die folgende Gleichung gefunden, die den Wärmeübergang von Glas an die Form ausreichend gut wiedergibt. Da die Bestimmung von Wärmeübertragungsmessungen den Rahmen des IPGR Projektes gesprent hätten, wird hier angenommen das die Gleichungen auf den Glas/Pegel Kontakt übertragbar sind. Gleichung 1 mit 2008 Messe Düsseldorf 2138

21 MyCatalog MyCatalog Q Übertragene Wärme [J] Tgob Tropfentemperatur [ C] Tplunger Pegeltemperatur [ C] tcontact Kontaktzeit von Pegel und Glas [s] C1, C2 Konstanten Um eine stationäre Rechnung durchzuführen muss der Wärmeeintrag auf die Kühlzeit bezogen werden. Die Heizleistung des Glases beträgt somit: Gleichung 2 Mit den Gleichungen 1 und 2 kann die Wärmelast des Pegels bestimmt werden, wenn die Kontaktzeit bekannt ist. Die Konatktzeit hängt wiederum von der Position auf dem Pegel ab. Abbildung 2 zeigt ein gemessenes, typisches Bewegungsprofil für eine 33cl Bierflasche. Die Pegelspitze hat die längste Kontaktzeit. Danach bewegt sich der Pegel aufwärts und der obere konische Punkt bekommt Glaskontakt. Der Pegel bewegt sich weiter aufwärts, bis er im unteren konsichen Punkt stehen bleibt. Abbildung 2: Gemessenes Bewegungsprofil des Pegels für eine 33cl Flasche Zur korrekten Bestimmung des Wärmeeintrags ist es also notwendig, das Bewegungsprofil für jeden Pegel/Behälter zu messen. Dies ist in der Praxis zu aufwändig. Daher wird im Modell das in Abbildung 2 dargestellte Bewegungsprofil verwendet. Für Berechnungen von grösseren Behältern (=längere Pegel) wird es leicht angepasst. Um das Begungsprofil auf andere Behälter zu übertragen, werden die Kontaktzeiten auf die Gesamtkontaktzeit bezogen. Das Verhältnis für die oben beschrieben charakteristischen Punkte ergibt sich dann gemäss Abbildung 3. Abbildung 3 Realative Kontaktzeiten der charakteristischen Punkte Die Kontaktzeiten für die charakteristischen Punkte lassen sich dementsprechend für unterschiedliche Behälter bestimmen, indem man die Verhältnisse mit der jeweiligen Gesamtkontaktzeit multipliziert. Die Gesamtkontaktzeit wiederum ergibt sich aus den existierenden Maschineneintsellungen für den individuellen Behälter. Mit diesen Information lässt sich der lokale Wärmeeintrag in den Pegel bestimmen. Gleichung 1 und 2 werden zu: Gleichung 3 Gleichung 4 Zur Vereinfachung der Berechnung wird angenommen, dass das Bewegungsprofil linear verläuft. Unter dieser Annahme ist es möglich zwischen oberem und unterem Kontaktpunkt zu interpolieren. Die lokale Kontaktzeit wird eine Funktion der Kontaktzeiten des oberen und unteren Kontaktpunktes und der Pegellänge l. Auf der Pegelspitze wird kein Profil angenommen. Die sich daraus ergebenden Gleichungen sind in Abbildung 4 zusammengestellt. Für alle Oberflächen, die keinen Glaskontakt haben, werden adiabate Bedingungen gesetzt, d.h. keine Wärme wird herein oder hinaus transportiert. Abbildung 4 Übersicht der verwendeten Randbedigungen auf der Pegeloberfläche 3. Validierung des Modells Zur Validierung des Modells wurden Versuche durchgeführt. Der Massenstrom durch verschiedene Designs der IPGR Mitglieder würde zur Verifizierung des Strömungsmodells verwendet. Das thermische Modell wurde durch Abkühlmessungen eines aufgeheizten Pegels validiert Validierung des Strömungsmodells In einer Laboreinrichtung wurde der Massenstrom durch verschiedene Pegel/Kühlrohranordnungen mittles eines Massenstrommessers bestimmt. Druckluft wird über eine 0.1m lange flexible Leitung gemäss Abbildung 5 zugeführt. Das Strömungsmodell wird durch den Vergleich des gemessenen und berechneten Massenstrom validiert. Als Annahmen für die Modellrechnung wurden folgende Annahmen getroffen: Stationärer Zustand Kompressible Strömung Temperaturabhängige Stoffwerte der Luft Experimente bei einem Druck von 20psi wurden zum Vergleich herangezogen. Abbildung 5 vergleicht diese Messungen mit den Simulationen. Für die fünf untersuchten Anordnungen ergibt sich eine sehr gute Übereinstimmung. Abbildung 5 Messprinzip im Labor und Ergebnisse der Massenstrommessungen 3.2. Validierung des thermischen Modells Das Prinzip bei der Validierung des thermischen Modells ist einen Pegel, der auf einer Drehbank eingespannt ist, mit einer Induktionsspule gleichmässig aufzuwärmen. Nach dem Aufwärmen wird die Temperaturänderung der Pegeloberfläche bei eingeschalteter Kühlung mit einer Thermokamera aufgenommen. Zur Erhöhung der Genauigkeit wurde der Pegel mit einem Lack definierter Emmisivität eingesprüht. Abbildung 6 zeigt den verwendeten Versuchsaufbau. Abbildung 6 Versuchsaufbau der thermischen Validierungstests Leider konnte die Kamera nicht an den Computer angeschlossen werden, so dass keine kontuierliche Abkühlkurve aufgenommen werden konnte. Der Massenstrommesser konnte die Zeitabhängigkeit auch nicht aufnehmen. Allerdings konnte die zeitliche Veränderung der Luftaustrittstemperatur mit einem schnellansprechenden Typ K Thermoelement aufgenommen werden. Diese Messung ermöglicht die Validierung des thermischen Modells. Auf der Modellseite wurde eine instationäre Rechnung durchgeführt. Wie bei der Strömungsvalidierung wurde eine kompressible Strömung mit temperaturabhängigen Stoffwerten der Luft angenommen. Als Startbedingung wurde eine gleichmässige Pegeltemperatur angesetzt. Der Wert entspricht dem mit der Kamera gemessenen. Abbildung 7 verdeutlicht den Vergleich von Messung und Simulation. Die Ergebnisse zeigen, dass eine konstante Wärmekapazität des Pegelmaterials die Messwerte nicht wiedergeben kann. Unter Annahme einer temperaturabhängigen Wärmeleitfähigkeit ergeben sich sehr gute Übereinstimmungen von Theorie und Praxis. Abbildung 7 Vergleich der Abkühlmessung mit Simulationen 4. Ergebnisse der Modellierung Im Pegelkühlungsprojekt der IPGR war der erste Schritt ein Vergleich der von den Mitgliedern verwendeten Pegeldesigns. In einem zweiten Schritt wurde ein Design für eine Parameterstudie ausgewählt. Meherere Einflussparameter wurden variiert, während andere konstant gehalten wurden. Um Interaktionen der Parameter zu finden und den Einfluss zu quantifizieren, wurde die statistische Methode des Design of Experiment (DOE) in einem dritten Schritt verwendet. In diesem Artikel wird nur auf einige 2008 Messe Düsseldorf 2139

22 MyCatalog MyCatalog Ergebnisse des DOE eingegangen Aufbau des DOE Die Methode des DOE basiert auf sogenannten faktoriellen Designs. Das heist, dass zwei oder mehrere Faktoren simultan variiert werden. Jedem Faktor wird ein Plus-(+1) und ein Minus(-1) Niveau zugeordnet. Die Auswertung eines DOE ist die Bestimmung von sogenanten Effekten. Es wird zwischen Haupteffekten und Wechselwirkungen unterschieden. Der Haupteffekt von z.b. Faktor A zeigt an, welche Änderung eine Antwortvariable erfährt, wenn der Faktor A von seinem Minus zum Plus Niveau verändert wird. Eine Wechselwirkung bezeichnet die Änderung der Antwortvariable bei simulataner ànderung zweier Faktoren. Die Antwortvariable ist eine messbare Grösse, die den Prozess charakterisiert. Im Fall der Pegelkühlung wurden folgende Antwortvariablen verwendet: Massenstrom durch die Anordnung [g/s] Gesamter Wärmeentzug durch die Kühlluft [J] Mittlere Temperatur im konischen Teil der Pegeloberfläche [ C] Mittlere Temperatur im Bereich der Pegelspitze [ C] Minimale Temperatur im konischen Teil der Pegeloberfläche [ C] Maximale Temperatur im konischen Teil der Pegeloberfläche [ C] Temperaturdifferenz auf dem konischen Teil der Pegeloberfläche [ C] Der Massenstrom und der Wärmeentzug sind ein Mass für die Kühlkapazität. Die mittlere Temperatur im konischen Teil und an der Spitze geben Aufschluss darüber, wie die Kühlung lokal in diesen Bereichen wirkt. Die minimalen, maximalen Temperaturen und die Differenz weisen auf die Gleichmässigkeit der Temperaturverteilung im konischen Bereich hin. Es wird ein faktorielles 25-1 Design verwendet und mit der kommerziellen Software MiniTab ausgewertet. Mit diesem Design können Haupteffekte und Wechselwirkungen zweiter Ordnung für fünf Faktoren bestimmt werden. Dabei werden folgende Faktoren ausgewählt, die in der vorherigen Parameterstudie den grössten Einfluss zeigten. Gesamtdruck am Eintritt Kühlzeit Wärmeleitfähigkeit des Pegelmaterials Durchmesser der Bohrung an der Spitze des Kühlrohrs Summe der Fläche der Bohrungen im Kühlrohr Ein weiterer wichtiger Faktor bezüglich der Temperaturverteilung ist der Wärmeeintrag in den Pegel. Dieser ist wiederum durch das Bewegungsprofil beeinflusst. Wie oben beschrieben wurde ein Bewegungsprofil angenommen. Um den Einfluss des Bewegungsprofils auf die Ergebnisse des DOE abzuschätzen, werden zwei weitere Profile analysiert. Es wird angenommen, dass die Bewegungszeit zwischen den charakteristischen Punkten um 25% länger (langsame Bewegung) bzw. kürzer (schnelle Bewegung) wird Ergebnisse des Design of Experiment Die Ergebnisse werden in Pareto Diagrammen für das Standardprofil dargestellt. Die farbigen Sterne in den Diagrammen zeigen die Ergebnisse für das schnelle und langsame Bewegungsprofil. Die + und - Zeichen heissen, dass der Wert der Antwortvariable bei einer Veränderung des Faktors vom Minus zum Plus Niveau steigt(+) oder sinkt (-). Die rote Linie markiert das Signifikanzniveau. D.h. das Haupteffekte und Wechselwirkungen mit geringen Effekten als dieser Linie mit einer 95% Wahrscheinlichkeit keinen Einfluss auf die Antwortvariable haben. Generell zeigt der Vergleich der verschiedenen Bewegungsprofile, dass für alle Bewegungsprofile und Antwortvariablen die gleichen Effekte einen signifikanten Einfluss haben. Aus Abbildung 8 wird deutlich, dass der Wärmeentzug signifikant durch den Eintrittsdruck, die Kühlzeit, die Bohrungsfläche und die Wärmeleitfähigkeit beeinflusst wird. Alle anderen Haupteffekte und Wechselwirkungen sind vernachlässigbar. Abbildung 8 Pareto Diagramme für die Kühlkapazität Bei höheren Drücken und grösseren Bohrungsflächen wird ein grösserer Massenstrom durch die Anordnung transportiert. Das führt zu einer grösseren Kühlkapazität. Wird die Kühlzeit verlängert, wird der gleiche Massenstrom für eine längere Zeit gefördert und somit auch mehr Wärme entzogen. Ist die Wärmeleitfähigkeit des Materials höher, wird die Wärme schneller zur Grenzfäche von Luft und Pegel transportiert und mehr Wärme wird entzogen. Abbildung 9 zeigt, dass die mittlere konische Temperatur von denselben Faktoren beeinflusst ist, wie der Wärmeentzug. Die mittlere konische Temperatur und der Wärmeentzug sind stark miteinander verbunden, da im konischen Bereich die meiste Wärme entzogen wird. Abbildung 9 Pareto Diagramme für die mittleren Temperaturen Das Pareto Diagramm für die mittlere Temperatur im Bereich der Pegelspitze in Abbildung 9 verdeutlicht, dass nur der Eintrittsdruckk und die Kühlzeit die Temperatur der Spitze signifikant verändern, da eine Änderung der Bohrungsfläche nur einen geringen Einfluss auf den Massenstrom durch die Bohrung an der Spitze hat. Daher wird auch der Wärmeentzug und damit die Temperatur nicht beeinflusst. Weiterhin ist der Einfluss einer höheren Wärmeleitung geringer als bei der konischen Temperatur, da die Pegelspitze länger in Kontakt mit dem Glas und die Übertragungsfläche kleiner ist. Die Einflussfaktoren für die Temperaturverteilung auf dem konischen Teil (minimale und maximale Temperatur, Temperaturdifferenz) entsprechen denen für den Wärmeentzug. Die Bohrungsfläche hat einen grösseren Einfluss, da sie die Massenstromverteilung entlang des Kühlrohrs verändert. 5. Feldmessungen als Praxistest des Modells Mit dem oben beschriebenen validierten Modell wurde ein Design weiter analysiert. Basierend auf den Erfahrungen der Parameterstudie und de DOE Ergebnissen wurde ein optimiertes Design vorgeschlagen. In Feldversuchen wurden die Vorhersagen unter Realbedingungen überprüft Vorhersagen des Modells Als erster Schritt wurde die Temperaturverteilung des existierenden Designs (=Standard) bestimmt. Durch Vorsehen von zusätzlichen Bohrungen im Kühlrohr und Änderung der Pegelinnenkontur konnte der Massenstrom von 10.6g/s auf 13 g/s für ein optimiertes Design gesteigert werden. Diese Steigerung resultiert in einer um 130 C geringeren Maximaltemperatur, wie Abbildung 10 verdeutlicht. Mit diesem optimierten Design ist möglich den Druck zu senken und somit Energie zu sparen. Abbildung 10 zeigt, dass bei einem auf 1.5 bar reduzierten Druck die Temperatur immer noch 25 C tiefer ist. Die 2008 Messe Düsseldorf 2140

23 MyCatalog MyCatalog Änderung von 2.8bar auf 1.5bar resultiert also in einer um etwa 105 C höheren Temperatur. Standard bei p= 2.8bar Optimiert bei p= 2.8bar Optimiert bei p = 1.5bar Abbildung 10 Ergebnisse der Optimierung 5.2. Versuchsaufbau Um die Aussagen des Modells zu überprüfen, müssen der Massenstrom und die Pegeltemperatur im Feld bestimmt werden. Die Temperatur wird mit einem Pyrometer bestimmt (Abbildung 11). Dieses Pyrometer erlaubt eine Punktmessung auf der sichtbaren Fläche des Pegels, während die Form geöffnet ist. In das Pyromter ist eine Kamera integriert, um den Messbereich zu erkennen. Das rechte Bild in Abbildung 11 verdeutlicht, dass der Messpunkt sich etwa 2mm unterhalb der Pegelspitze befindet. Der Emmisionskoeffizient wurde auf 0.9 gesetzt. Dieses beeinflusst den Absolutwert, aber nicht die relativen Änderungen. Daher spielt er für die Messungen hier eine untergeordnete Rolle. Leider war es mit der Versuchsanordnung nicht möglich eine Temperaturverteilung zu bestimmen. Daher können die Modellaussagen diesbezüglich nicht validiert werden. Der Massenstrom wurde mit einem Venturirohr bestimmt, das zwischen Ventil und Maschine eingebaut wurde. Abbildung 11 Pyrometermessungen in der Glashütte 5.3. Temperaturmessungen Abbildung 12 stellt die Temperaturmessung für das Standard Design dar. Es zeigt die Temperatur in Abhängigkeit von der Zeit. Zur Analyse der Temperaturmessungen ist es notwendig, einen Referenzpunkt auszuwählen. Als Referenzpunkt wird das Ende der Kühlzeit gewählt, wie in Abbildung 12 markiert. Wenn der Pegelbetrieb im thermischen Gleichgewicht ist, ist diese Temperatur über die Zyklen konstant. Daher wird sie im folgenden als stationäre Referenztemperatur bezeichnet. Abbildung 12 Temperaturmessung für den Standard Diese beträgt für das Standard Design etwa 470 C. Der Druck am Venturirohr betrug 2.8 bar. Die Kühlung war von an. Die linke Seite von Abbildung 13 zeigt die Temperatur für das optimierte Design mit derselben Kühlzeit ( ) wie das Standard Design. Die resultierende stationäre Referenztemperatur beträgt etwa 310 C, d.h. 160 C weniger als für das Standard Design. Dieses ist in guter Übereinstimmung mit den Modellvorhersagen von 140 C. Diese Verbesserung der Kühlkapazität aufgrund des höheren Massenstroms lässt sich wie oben erwähnt in eine Verringerung des Druckes und eine Energieersparnis umsetzen. Daher wurden in weiteren Versuchen der Druck und die Kühlzeit verringert, um das Energieeinsparungspotential zu bestimmen. Aus Abbildung 13 wird deutlich, dass bei einer Reduktion der Kühlzeit von (d.h. um 35%) die stationäre Referenztemperatur auf 430 C steigt. Dieses liegt im Bereich des Standard Designs. Wenn der Druck auf 1.6bar reduziert und die Kühlzeit auf dem ursprünglichen Niveau gehalten wird, wird eine stationäre Referenztemperatur von 440 C erreicht, wie Abbildung 14 zeigt. Der Anstieg von 130 C bei einer Druckänderung von 2.8 auf 1.6bar bestätigt die Modellvorhersage von 105 C bei einer ähnlichen Druckänderung. Der gemessene Massenstrom für das optimierte Design bei 1.6bar ist 12.2g/s, für das Standard Design 10.8g/s bei 2.8 bar. Um die Energieeinsparung abzuschätzen wird folgende lineare Abhängikeit des Energieverbrauchs angenommen: Unter dieser Annahme ist mit dem optimierten Design 35% weniger Energie nötig, um die gleiche Kühlkapazität (d.h. die gleiche stationäre Referenztemperatur) zu erreichen wie mit dem Standard Design. Abbildung 13 Einfluss der Änderung der Kühlzeit mit optimierter Anordnung Abbildung 14 Einfluss der Änderung des Drucks mit optimierter Anordnung 6. Zusammenfassung Es wurde ein stationäres Modell zur Beschreibung der Strömungs- und Temperaturverteilung in Pegel/Kühlrohr Anordnungen für die Hohlglasindustrie entwickelt. Dieses Modell basiert dem kommerziellen CFD (Computational Fluid Dynamics) Software Packet Fluent. Die notwendigen Randbedingungen zur Beschreibung der gekoppelten Impuls- Masse- und Energieerhaltungsgleichungen wurden definiert und deren Gültigkeit in Labormessungen validiert. Mit diesem Modell wurden Parameterstudien und Vergleiche unterschiedlicher Designs durchgeführt. Anschliessend wurde die Design of Experiment Methode angewandt, um entscheidende Einflussfaktoren miteinander zu vergleichen und Wechselwirkungen unter ihnen zu identifizieren. Der Massenstrom durch die Anordnung und die Kühlkapazität sind stark miteinander verknüpft. Der Massenstrom und die Kühlkapazität sind hauptsächlich von der Kühlzeit, dem Eintrittsdruck und der Bohrungsfläche im Kühlrohr beeinflusst. Die Anwendbarkeit des Modells wurde in Feldtests bestätigt. Die Voraussagen der Verbesserungen hinsichtlich Massenstrom und Temperatur bei Verwenduing eines optimierten Designs trafen gut zu. Gegenüber dem bisher verwendeten Design konnte mit dem optimierten Design eine Temperaturreduktion von 160 C erzielt werden. Dieses konnte in eine 35% Energieersparnis umgemünzt werden. Falls die Pegelkühlung limitierend ist, kann die erhöhte Kühlkapazität auch zu einer Geschwindigkeitssteigerung genutzt werden. Danksagung Die Arbeit entstand im Rahmen eines von den International Partners in Glass Research (www.ipgr.com) finanzierten Projektes. Ich möchte allen IPGR Mitgliedern für ihre Mitarbeit und Hilfe danken. Ein spezieller Dank geht an David Braithwaite für die Service Linksnach obendatenschutznutzungsbedingungenseite druckenseite empfehlen Messe Düsseldorf Mehr Informationen Suche Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if 2008 Messe Düsseldorf 2141

24 MyCatalog MyCatalog (ele.value == "Ident-Nr.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Standauftrags-Nr.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login für Aussteller Ident-Nr.: Standauftrags-Nr.: Passwort: Fragen zum Passwort und zum OOS? Tel.:+49/ Online-Support für Besucher & Presse Login: Passwort: Passwort vergessen? Benutzerkonto einrichten Pressezugang beantragen As a global glass container supplier at the forefront of new manufacturing techniques, Wiegand-Glas a long-time partner of Emhart Glass embraced Emhart Inex s MiniLab glass container measurement technology shortly after its introduction. After purchasing 10 systems for its global manufacturing facilities, Wiegand recently ordered four additional systems for its manufacturing plants in Steinbach am Wald and Grossbreitenbach in Germany. The MiniLab offers a new approach to automated glass container sampling with significant production benefits, providing quantitative measurement data and replacing mechanical go-no-go measuring techniques with a non-contact, camera-based platform that tests more parameters at higher speeds and achieves good process stability. HANDS-OFF AUTOMATION Offering a selection of over 400 glass bottle styles, from traditional wine and beer to non-rounds and ovals, Wiegand-Glas also manufactures highly customised ware and glass containers with decorative coatings. The company s modern manufacturing plants are completely automated from hot end to cold end. The main human involvement is found in the control rooms where technicians monitor the production process. The MiniLab system fits our production style of hands-off automation, explained Oliver Wiegand, managing director of Wiegand-Glas. It accepts bottles as they exit the lehr and performs all tests without human intervention. We receive data from the cold end inspection equipment in real time, allowing us to react immediately if container specifications do not meet set standards. COMPLETE SAMPLING SOLUTION The MiniLab is a complete sampling solution that can handle two different containers simultaneously, providing automatic operation, simplified setup and low maintenance. The system has several components: Isis provides external dimensional gauging, pushup height, corkage and weight measurements, the Finish Profile Gauge option for the Isis measures the very small flange and knockout defects near the sealing surface of the bottle, and the MiniLab Pressure Plus measures the container s maximum internal pressure strength and fill-point capacity. Our previous system did not conduct capacity testing, which is an important component of the MiniLab system, said Oliver Wiegand. Another benefit of this system is its flexibility and quick changeover. The system provides reproducible mould-correlated data for the required measurements (see diagrams). INSPECTING ALL STYLES The standard system inspects all of the plant s glass styles: flint, amber and green glass in oval, square, rectangular, round and special shapes. We were looking for a vendor to supply a complete inspection solution, and the Emhart Inex MiniLab provided all the components to meet our application, said Wiegand. The MiniLab system uses high resolution cameras, precision optics, intelligent sensors and advanced container handling techniques, and the data interface package outputs cavity-correlated measurements to standard plant management software Messe Düsseldorf 2142

25 MyCatalog MyCatalog Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login 1. Introduction An important step in the hollow glass forming process is the pressing of glass with a so called plunger. As the plunger is in direct contact with the about 1100 C hot glass, it is exposed to a significant heat input and therefore has to be cooled to avoid sticking of the glass. In practice the cooling is done with air, which is fed to plunger inside by a bored cooling tube (cooler). This study describes the development and validation of a 3D model that predicts the flow and temperature distribution in plunger and cooler set-ups. With this tool the governing parameters for the plunger/cooler set-up are determined. The work was done as an IPGR (International Partners in Glass research) project. The IPGR is a worldwide research consortium of today seven glass plants. Besides very close co-operations in benchmark projects, fundamental R & D projects are funded. The scope of the IPGR project was to develop a steady state and transient model. In this report only the steady state model is described. As a first step of the model development the necessary boundary conditions are formulated. These boundary conditions are implemented in the commercially available CFD (Computational Fluid Dynamics) Code Fluent that allows solving the coupled momentum and energy conservation equations. In trials the assumed boundary conditions are validated and verified. With the validated model the most important parameters influencing the temperature and flow distribution are identified using the Design of experiment method. Based on this experience predictions and optimisation recommendations for a plunger and cooler design were generated and compared to measurements in field trials. 2. Calculation model 2.1. General calculation procedure As stated above the model bases on the commercially available CFD (Computational Fluid Dynamics) Code Fluent. This code is a general-purpose solver to solve coupled thermal and fluid dynamics problems. It incorporates all the necessary solution algorithms and therefore saves time in setting up the calculation model. Furthermore it reduces the risk of faulty programming significantly. In order to set up a problem with Fluent it is first of all necessary to define the geometry and the calculation grid. For this purpose a special program that is part of FLUENT called Gambit is used. It allows defining the geometry and after that meshes this geometry model. As the geometry creation and the meshing is a time consuming step the geometry creation is automised. This calculation model is transferred to the FLUENT solver. In order to solve the coupled equations of momentum (Navier-Stokes), mass and energy conservation it is necessary to know the conditions on the boundaries of the calculation model. These conditions have to be specified by the user. Basically these are the heat load on the plunger and the pressure at inlet and outlet as illustrated by Figure 1. In order to save calculation time only one quarter of the axis-symmetric geometry is used. At the cutting area symmetry boundary conditions are applied. Figure 1 Geometry and necessary boundary conditions for the steady state model 2.2. Used boundary conditions 2008 Messe Düsseldorf 2143

26 MyCatalog MyCatalog In order to define the flow region (that means the equations for conservation of mass and momentum) the pressure values at the inlet and outlet of the calculation model have to be set. In the model the outlet is located at the outlet of the plunger. The inlet is determined to be the inlet of the cooling tube. In order to define the flow region (that means the equations for conservation of mass and The conservation equation of energy needs boundary conditions for heat input at all outer surfaces. In order to define the flow region (that means the equations for conservation of mass and Mass and Momentum In order to define the flow region (that means the equations for conservation of mass and As described above the pressure condition at the inlet and outlet have to be set. On the outlet it is assumed that the static pressure equals the ambient pressure. In order to define the flow region (that means the equations for conservation of mass and The problem with the inlet pressure is that only the pressure at the valve is known. In order to reduce the model to a manageable size, the calculation starts at the entrance of the cooler. Therefore the pressure drop between the valve and the entrance of the cooler has to be determined. The pressure at the cooling tube entrance is then the pressure at the valve reduced by the pressure drop. In order to define the flow region (that means the equations for conservation of mass and In order to determine the pressure drop between valve and cooling tube two measurements were conducted. In both cases a pressure tank (pmax = 5bar) with a capacity of 1.5m³ was used to supply a plunger mechanism with air. The mass flow through the system was monitored. In the first experiment plunger and cooler were mounted, whereas in the second only a plunger was installed. For the measurements a typical plunger and cooler set-up was used. In order to define the flow region (that means the equations for conservation of mass and The pressure drop can be determined as follows: With the known pressure at the valve the air flow through the entire system (Mechanism, plunger and cooler) can be determined from the first experiment. With this airflow, the pressure loss through the mechanism can be deduced from the second experiment. This was done for various air flows. The mass flow vs pressure drop characteristic was implemented in FLUENT via a User defined function. In order to define the flow region (that means the equations for conservation of mass and Energy In order to define the flow region (that means the equations for conservation of mass and In order to solve the conservation equation for the energy it is necessary to know what the heat input and output out of the system is. Therefore the thermal conditions on every surface of the model have to be specified. In order to define the flow region (that means the equations for conservation of mass and For the air inlet temperature a value of 40 C is assumed. This accounts for the warming of the air on its way through the mechanism. The outlet temperature is automatically calculated by FLUENT depending on all the given equations and boundary conditions. In order to define the flow region (that means the equations for conservation of mass and The heat input on the plunger surface that is in contact with the glass depends on the contact time of plunger and glass. In former experimental investigations done by Emhart In order to define the flow region (that means the equations for conservation of mass and Glass the following equation fitted the heat input from glass to a blank mould very good. As a measurement of the heat transferred from glass to plunger is very complex for this study it is assumed that the results obtained from the blank mould / glass contact can be transferred to the plunger / glass contact situation. The following equation applies. In order to define the flow region (that means the equations for conservation of mass and Equation 1 In order to define the flow region (that means the equations for conservation of mass and with In order to define the flow region (that means the equations for conservation of mass and Q Transferred heat [J] In order to define the flow region (that means the equations for conservation of mass and Tgob Temperature of gob [ C] In order to define the flow region (that means the equations for conservation of mass and Tplunger Plunger temperature [ C] In order to define the flow region (that means the equations for conservation of mass and tcontact Contact time of glass and mould [s] In order to define the flow region (that means the equations for conservation of mass and C1, C2 Constants In order to define the flow region (that means the equations for conservation of mass and In order to reduce the necessary calculation time a steady state examination is done. Therefore the transferred heat has to be referred to the time the cooling is applied (tcool). The heating power of the glass then equals: In order to define the flow region (that means the equations for conservation of mass and Equation 2 In order to define the flow region (that means the equations for conservation of mass and With equation 1 and 2 the heat load on the plunger can be determined if the contact time is known. The contact time depends on the location. Figure 2 shows a typical measured motion profile for a plunger used for 33cl beer bottle. The plunger tip has the longest contact time. Later the plunger begins to move upwards and the upper point of the conic part comes into contact. After that the lower point of the conic part and small parts of the cylindrical part come into contact until the plunger is retracted. In order to define the flow region (that means the equations for conservation of mass and Figure 2: Measured motion profile of the plunger for a 33cl bottle In order to define the flow region (that means the equations for conservation of mass and For a correct determination of the heat load on the plunger it would be necessary to measure this motion profile for every container. As this is costly (both money and time wise) the motion profile shown in Figure 2 is used for all container examined in this study. In order to define the flow region (that means the equations for conservation of mass and In order to transfer the motion profile to another container the contact times are referred to the overall contact time. The fraction obtained for the three characteristic points plunger tip in contact, upper conic point in contact and lower conic point in contact is shown in Figure 3. In order to define the flow region (that means the equations for conservation of mass and 2008 Messe Düsseldorf 2144

27 MyCatalog MyCatalog In order to define the flow region (that means the equations for conservation of mass and Figure 3 Contact time fractions for characteristic points using measured motion profile In order to define the flow region (that means the equations for conservation of mass and The contact times for the characteristic points of a different container can now be calculated by multiplying the above obtained fraction with the overall contact time. The overall plunger contact time in return can be calculated from the machine settings depending on the individual job. In order to define the flow region (that means the equations for conservation of mass and With this information the localised heat input on the plunger can be calculated. Equation 1 and 2 become: In order to define the flow region (that means the equations for conservation of mass and Equation 3 In order to define the flow region (that means the equations for conservation of mass and Equation 4 In order to define the flow region (that means the equations for conservation of mass and In order to further simplify the calculation it is assumed that the motion profile is linear. Under this assumption it is possible to interpolate between the high and low conic contact points. The local contact time becomes a function of the contact time of the high and the low contact point and the length of the plunger. No profile is assumed on the plunger tip. This correlation is illustrated in Figure 4. All surfaces not in contact with the glass are assumed to have a zero heat flux. That means that no heat is transported into the plunger, nor heat is lost. In order to define the flow region (that means the equations for conservation of mass and Figure 4 Summarised boundary conditions on the plunger surface In order to define the flow region (that means the equations for conservation of mass and 3. Model validation In order to define the flow region (that means the equations for conservation of mass and For the validation of the above-described models verification trails were performed. The mass flow through the investigated designs is determined to verify the flow part of the model. The thermal model was validated by monitoring the cooling of a preheated plunger. In order to define the flow region (that means the equations for conservation of mass and 3.1. Flow model validation In order to define the flow region (that means the equations for conservation of mass and A laboratory test rig was used in which the mass flow through the plunger/cooler set-up was determined with a flow meter. Pressurized air is supplied via a 0.1m long flexible tube (see Figure 5). In order to define the flow region (that means the equations for conservation of mass and The flow model is verified by comparing the measured overall mass flow through the different plunger/cooler assemblies with calculated values. The following assumptions are made for the calculations: In order to define the flow region (that means the equations for conservation of mass and steady state In order to define the flow region (that means the equations for conservation of mass and compressible air flow In order to define the flow region (that means the equations for conservation of mass and In order to define the flow region (that means the equations for conservation of mass and temperature dependent air properties In order to define the flow region (that means the equations for conservation of mass and Lab experiments at 20psi are used for validation purposes. Figure 5 compares the measured with the calculated values. For the five measurements the agreement between measured and calculated values is very good. In order to define the flow region (that means the equations for conservation of mass and Figure 5 Measurement principle in lab and mass flow results In order to define the flow region (that means the equations for conservation of mass and 3.2. Thermal model validation In order to define the flow region (that means the equations for conservation of mass and The thermal model cannot be validated with the above-described set-up. The idea of the validation measurements is to heat up the plunger with an induction coil on a lathe. After the plunger is heated up uniformly the temperature change on the plunger surface is continuously measured with a thermal area camera. In order to minimise the measurement uncertainties, the plunger surface is sprayed with a high temperature resistant finish in order to get a defined emissivity. Figure 6 shows the experimental set-up. In order to define the flow region (that means the equations for conservation of mass and Figure 6 Experimental set-up for thermal model verification trails In order to define the flow region (that means the equations for conservation of mass and Unfortunately the camera could not be successfully connected to a computer, so that no monitoring of the thermal process could be obtained. The mass flow measurement device could not monitor the time dependence either. Nevertheless the air outlet temperature could be monitored over time using a type K thermocouple placed in one of the outlet bores. This time dependent measurement gives the chance to validate the model against the measurement. In order to define the flow region (that means the equations for conservation of mass and For the modelling a transient calculation is performed. As for the flow model calculations a compressible air flow and temperature dependent properties are used for the air. As start condition a uniform temperature of the heated part of the plunger is assumed. The start temperature is set to the value measured with the area camera. In order to define the flow region (that means the equations for conservation of mass and Figure 7 shows the comparison of measurement and calculation In order to define the flow region (that means the equations for conservation of mass and The calculations show that the heat capacity of the material is very important. Assuming a constant heat capacity for the plunger the experimental data could not be reproduced by the model. Using a temperature dependent heat capacity the model is in very good agreement with the measurements. In order to define the flow region (that means the equations for conservation of mass and Figure 7 Comparison of transient behaviour In order to define the flow region (that means the equations for conservation of mass and 4. Modelling results In order to define the flow region (that means the equations for conservation of mass and 2008 Messe Düsseldorf 2145

28 MyCatalog MyCatalog IPGR members were compared against each other. In a second step one of the designs was chosen to perform a parametric study. Several influencing parameters were varied, while keeping the others constant. In order to identify interactions and quantify the effect of the parameters a statistical method called Design of Experiment (DOE) is used in a third step. In this report only the results of the DOE are discussed DOE Set-up The Design of Experiment method bases on factorial designs. This means that two or more factors are varied simultaneously. Each factor is assigned a plus (+1) and a minus (-1) level. The evaluation of these factorial designs is basically the determination of the so-called effects. It is distinguished between main effects and interactions. The main effect of a factor A (EA) shows, which change a response variable Z will take, if the factor A is changed from its minus to its plus level. An interaction is the impact on a response variable, which is caused by the simultaneous change of several factors. A response variable is a measure that is characterising the process. In this case the following response variables are used: Overall mass flow [g/s] Overall heat extraction [J] Average Temperature on the conic part of the plunger surface [ C] Average temperature on plunger tip surface [ C] Minimum temperature on the conic part of the plunger surface [ C] Maximum temperature on the conic part of the plunger surface [ C] Temperature difference on the conic part of the plunger surface [ C] The overall mass flow and the overall heat extraction are a measure how high the cooling capacity is. The average temperatures on the conic part and the tip specify how effective the cooling in these areas is. The minimum, maximum and difference of the temperatures on the conic part indicate the quality of the thermal distribution on the conic part of the plunger. In order to compare the influence from main effects and interactions on the response variables Pareto charts are used. These summarise the main effects and the interactions for the response variables. A factorial 25-1 design is used and analysed using the commercial software MiniTab. This means that the effects and second order interactions for 5 factors can be determined. The parameters that showed the biggest influence on the temperature in the parametric study are chosen as follows total inlet gauge pressure cooling time thermal conductivity of plunger material diameter of tip hole area of cooling holes A further, very important factor in determining the temperature distribution is the heat input on the plunger. The heat input is influenced by the motion profile. As described above one motion profile was assumed for the study. In order to estimate what difference a change in the motion profile makes, two other profiles are discussed for the base case design. It is assumed that the motion time between the characteristic points of the profile is 25% shorter (fast motion), respectively longer (slow motion) Results of the DOE The pareto charts represent the results for the standard motion profile. Coloured stars in the charts indicate the results for the slow and fast motion profile. The + and - shown in the bars of the Pareto chart indicate if the value of the response variable increases (+) or decreases (-) if the factor is changed from its minus to plus level. The red lines indicated in the Pareto chart mark a significance level. This means that main effects and interactions with lower effect values as indicated by this line show within a 95% probability no influence on the response variable. Comparing the results for the different motion profiles it is obvious that for all motion profiles and response variables the same effects show a significant influence. The identification of the governing effects seems to be independent of the motion profile. Figure 8 shows that the overall removed heat is significantly influenced by inlet pressure, cooling time, hole area and the thermal conductivity of the plunger material. All other main effects and interactions are not significant regarding the heat removal. Figure 8 Pareto charts of response variables cooling capacity With higher inlet pressures and hole areas the mass flow through the system increases. This results in a higher cooling capacity. Increasing the cooling time means applying the same mass flow for a longer time and therefore increasing the heat removed. With a 2008 Messe Düsseldorf 2146

29 MyCatalog MyCatalog higher thermal conductivity more heat is removed as it is distributed better from the outer surface to the inner surface of the plunger. Figure 9 clarifies that the average conic temperature is significantly influenced by the same effects as the removed heat. The average conic temperature and the removed heat are close-linked as most heat is removed where the plunger is hottest and has the highest surface area. The region this applies to is the conic part. Figure 9 Pareto charts of response variables Average temperatures The Pareto chart for the average tip temperature in Figure 9 illustrates that only the inlet pressure and the cooling time influence the tip temperature. As the increase of the bore area has a minor influence on the mass flow through the tip bore, the heat extraction and thus the temperature is not influenced by a change in hole area. Furthermore the tip region is too small and the contact time longer that the better heat distribution due to a higher thermal conductivity has a significant influence on the tip temperature either. The influencing effects for the temperature distribution on the conic part represented by the minimum and maximum temperature and the temperature difference are the same as for the heat removal. The hole area has a more significant influence as the mass flow distribution along the cooler is influenced, when the hole area is changed. 5. In factory measurements to prove model applicability Using the above developed and verified model one plunger/cooler design was further analysed. Based on the experience of the parametric study and the DOE results an optimised set-up was determined. The predictions were compared to measurement data from field trials Model prediction As a first step the temperature distribution of the current (= standard) set-up was calculated. Applying more bores in the cooling tube and changing the inner contour of the plunger, the mass flow throughput could be increased from 10.6g/s for the standard to 13g/s for the optimised design. This results in a temperature reduction of 130 C in the hottest region as can be seen from Figure 10. This reduction in return can be used for decreasing the pressure, meaning saving energy. Figure 10 shows that at a pressure of 1.5 bar still 20 C lower temperatures are observed. Changing the pressure from 2.8bar to 1.5bar results in a temperature increase of roughly 105 C. Standard at p= 2.8bar Optimized at p= 2.8bar Optimzed at p = 1.5bar Figure 10 Results of the optimisation 5.2. Experimental set-up In order to validate the model findings, the mass flow through the set-up and the plunger temperature have to be measured. The temperature is measured with a pyrometer as shown in Figure 11. This means that the temperature measurement is restricted to the plunger area that is visible during the time the mould is open. An integrated camera helps to adjusts the pyrometer measurement point. The right picture in Figure 11 illustrates that the temperature is measured about 2mm below the tip. The emission coefficient is set to a value of 0.9. This value influences the absolute temperature value, but as the analysis of the measured data is relative the value of the emission coefficient has no meaning for the validation of the model. Unfortunately it is not possible with this experimental set-up to determine the temperature distribution on the plunger surface. This means that the modelling results concerning the equalisation of the temperature profile cannot be verified. For the mass flow measurement a Venturi-tube is mounted in the piping between valve and machine. Figure 11 Pyrometer measurements in the field 5.3. Temperature measurements Figure 12 shows the temperature measurement for the standard set-up. It shows the temperature over time assuming an emission coefficient of 0.9. For the analysis of the temperature measurements it is necessary to pick one reference point of each cycle. The reference point is chosen to be the point at the end of the cooling. It is marked in Figure 12. For the steady state of the plunger operation the temperature at this reference is constant over the cycles. This temperature is therefore called the steady state reference temperature in the following. Figure 12 Temperature reading of standard set-up According to Figure 12 the steady state reference temperature for the standard set-up is about 470 C. The pressure measured at the Venturi tube was 2.8bar. The cooling was turned on from Figure 13 shows the temperature response of the optimised set-up (left part) with the same cooling time as for the standard set-up. The resulting steady state reference temperature for the optimised set-up is approximately 310 C. This corresponds to a temperature reduction of 160 C. This is well in accordance with the model prediction of 140 C. Every increase in cooling capacity due to increased mass flow can be used for a reduction in either cooling time or pressure decrease. The pressure and the cooling time are reduced till the same steady state reference temperature is reached as with the original set-up Messe Düsseldorf 2147

30 MyCatalog MyCatalog If the cooling time is decreased to (i.e. by 35%), the steady state reference temperature rises to 430 C as indicated in Figure 13. This is in the range of the steady state reference temperature for the standard set-up. If the pressure is decreased to 1.6bar while keeping the same cooling time the steady state reference temperature rises to 440 C as shown in Figure 14. The temperature increase of 130 C when changing the pressure from 2.8 to 1.6 bar, corresponds reasonable with the model prediction of 105 C. The measured mass flow for the optimised set-up at 1.6bar is 12.2g/s, for the standard set-up 10.8g/s at 2.8bar. In order to estimate the energy savings the following linear dependence of the energy consumption is assumed: Under this assumption about 35% less energy is needed with the optimised set-up to provide the same cooling capacity (to reach the same the steady state reference temperature respectively). Figure 13 Temperature readings with optimised set-up changing the cooling time Figure 14 Temperature readings with optimised set-up changing the inlet pressure 6. Summary A steady state model to describe the flow and temperature distribution in plunger and cooler set-ups for the hollow glass industry was developed. The model is based on the commercially available CFD (Computational Fluid Dynamics) Code Fluent. The necessary boundary conditions to describe the coupled conservation equations for momentum, mass and energy are formulated and validated in laboratory experiments. Applying the model parametric studies and design comparisons of existing designs were done. Furthermore the model was used to determine the governing factors for the plunger surface temperatures and identify interactions using the Design of Experiment method. The mass flow and the cooling capacity are close-coupled. The mass flow and the cooling capacity are mostly influenced by the cooling time, the pressure and the summed cooler bore area. The model applicability was proven in field trials with a 33cl beer container. The model predictions regarding mass flow and temperature met the experimental results well. The plunger temperature could be reduced by 160 C when using the proposed optimised design, which in return can be used to save 35% energy for compressed air ot to speed up the process if the plunger cooling is limiting. Acknowledgement The work was done as project funded by the International Partners in Glass Research (www.ipgr.com). I like to thank the IPGR members for the collaboration and help, a special thank you to David Braithwaite for the discussions and experimental work done together. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login 2008 Messe Düsseldorf 2148

31 MyCatalog MyCatalog Eurotherm Deutschland GmbH Eurotron Instruments S.p.A. Address Ottostr Limburg Germany Telephone Fax Internet Address Booth Hall 13 B25 Address Viale Fratelli Casiraghi, 409/ Sesto S. Giovanni / MI Italy Telephone Fax Internet Address Booth Hall 12 E Electrically heated systems Measurement and control of glass temperature Control and automation technology Inspection, protocolling and diagnostic systems Process control systems Measurement and control of glass temperature 2208e Miniatur Temperaturregler Das Modell 2208e ist ein vielseitiger PID Temperaturregler im 1/8 DIN-Format (48x96mm) mit Selbstoptimierung. Die Modulare Hardware des 2208e beinhaltet ein Alarmrelais, 2 Regelausgänge und ein Kommunikationsmodul. Die Ausgänge sind für Heizen, Kühlen oder Alarm konfigurierbar Measurement and control of glass temperature Measurement, control and inspection of gas compounds Measurement and control of glass temperature IRtec P 510G Series Temperature Range 150 to 1300 CRugged with Protective Rubber HolsterOptical Resolution 30:15.1 µm Spectral ResponseTTS Dual Laser, Telescope or Red Point Target PinpointingDual Optics Close / Standard Focus SwitchableLarge LCD Display with Automatic BacklightUp to 50 Preset Common Material Emissivity ValuesTC s type K s Input for Automatic Emissivity SettingPowered by Li-ION Rechargeable BatteryUSB Interfacen and IRLogMan 2007 SoftwareData Memory Grouped by Tag (500 Records)External IR printertraceable Report of Calibration Portable Documenting Infrared Thermometers for Glass Specialized Applications GreenLine Measurement, control and inspection of gas compounds 2008 Messe Düsseldorf 2149

32 MyCatalog MyCatalog The Complete Portable Tool for Tuning & Maintenance of Boilers, Heaters, Dryers, Kilns, Furnaces, Stationary Internal Combustion Engines, Turbines, & Chemical Laboratories. Water, Air, and Surface Temperature Measurements Measures up to 4 Gases of your choice: O2, CO, NO, NO2, SO2, CxHy Built-in Impact Printer (non-thermal) Stores up to 250 Samples Low NOx Capabilities NO/NOx & SO2 Emission Analyzer CxHy UnCombusted HydroCarbons Draft & Differential Pressure Sensors External Water Trap for Condensate Removal Gas and Air Temperature Measurement Ionization Flame Tester Ambient CO Monitor (w/ Internal or External Sensor) Automatic Over Range Protection for CO Sensor Temperature & Humidity Meter Windows Software GreenLine 8000 The GreenLine 8000 is the Most Powerful & Advanced Portable Gas Analyzer on the Market, and is a Complete, Portable Tool for EPA Compliance Level Emissions Monitoring. Measures up to 9 Gases of your choice: O2, CO, NO, NO2, SO2, CxHy, H2S w/ Temperature Compensated EC Cells and NDIR Bench for CO2, CO, CxHy Measurement Monitor True Low NOx (NO+NO2) for ranges of Min: (0-25 ppm), Max: (0-500 ppm) with 0.1ppm Resolution Main Control Unit & Remote Control Unit w/ Built-in Printer Draft & Differential Pressure Sensors Full Compliance to EPA Protocol (CTM-030, CTM-034) Built-in Peltier Chiller with Automatic Condensate Removal Heated Hose and Heated Probe Head 9000 Full Analysis Memory Windows Software for Real-Time Data Logging, Graphing, and Reporting Automatic Protection for CO Sensor w/ Purge Pump Long-Term Monitoring w/ Automatic Water Condensate Drain Electronic Flow-Meter Aux 4-20mA Inputs Gas Sniffer Probe Fenetech Inc. Address 1455 Danner Dr Aurora, Ohio USA Telephone Fax Internet Address Booth Hall 13 C MRP/CAD/CIM systems Process control systems Other control systems MRP/CAD/CIM systems FeneVision SCAD FeneVision SCAD - CAD/CAM system for special shapes, includes a flexible shape catalogue where any special shapes can be added as needed. Complete drawing functionality including cutout library as well as positioning of drill holes. Among other additional features SCAD includes polishing / grinding functionality, Import/Export to DXF and CNC for any type of CNC cutting or processing line as well as fully dimensioned drawings. Available as stand-alone version or embedded in the FeneVision GLASS ERP solution Link zu weiterer Information Process control systems The most innovative ERP solution for the glass industry The FeneVision GLASS ERP solution is the most innovative and advanced software solution available on todays market for glass processing companies. Unlike other solutions on the market which use different data sources and databases for front and back end FeneVision GLASS offers complete integration from start to finish. The overall system is based on 2008 Messe Düsseldorf 2150

33 MyCatalog MyCatalog one single and central Microsoft SQL database and offers full functionality all in one package starting from quotes, order entry,costing, capacity planning, scheduling, stock control, purchasing, integrated CAD/CAM solution, full shop floor control, routing and tracking, dynamic and fully online optimization system including re-make concepts. Moreover the solution offers complete monitoring and bar-coding and features online control of laser devices or scanning systems for measuring and sheet identification. FeneVision GLASS is outstanding in its completeness, functionality and fully graphical user interface. FeneVision - the way to go for any glass processing company Link zu weiterer Information COMPANY NEWS FeneTech Inc. has recently entered a strategic partnership with Austrian based SOFTSOLUTION, specialists in innovative software and equipment technology for the glass industry. As a premiere to the North American glass industry the LSC LINESCANNER (among other new products) will be introduced and demonstrated for the first time during the GlassBuild show in Las Vegas (October 6-8). Following the huge success of this technology in Europe, FeneTech and Softsolution see a huge market potential for this type of equipment in North America. The LSC LINESCANNER is able to measure and identify glass with a resolution of 400 dpi ( mm) including the possibility to check drill hole or cut-out positions including shapes by overlapping the original CAD drawing to the scanned result. Furthermore the LSC LINESCANNER is able to detect any type of surface default such as inclusions, scratches, stains, chips, coating defects and others. These tolerances for defect detections can be individually set depending on the allowed tolerances. All this is achieved in one single scanning process. The LINESCANNER offers various applications and can be built to any size it exists as a horizontal or vertical unit. Current applications include installations at tempering furnaces (measure and identify glass and display the result at the furnace exist including the possibility to print labels online (label-less production). Other applications include measuring and quality control at an IG line (vertical scanner). Technical details: any type of size available, up to 0.5 meters / second speed, evaluation of results occurs within the normal machine cycle time, real illustration of the defect by a high resolution picture, archiving and storing of statistical defect information, little space required, powerful software. The CULLET SCANNER, a sister product of the LSC LINESCANNER allows testing of fragmentation of tempered glass according to various specifications (tempered, heat strengthened, Automotive, shower doors) - For more information or an individual presentation contact us or give us a call at Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( 2008 Messe Düsseldorf 2151

34 MyCatalog MyCatalog "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Ohio based FeneTech Inc., developer of the well established and widely spread FeneVision ERP solution for manufacturers of windows & doors, sunrooms as well as glass processing companies, today announces world-wide availability of FeneVision CORE Version 5, a brand new release of the leading FeneVision ERP software package. Both FeneVision ERP and the recently launched FeneVision GLASS ERP solutions will be on display during GlassBuild America 2008 in Las Vegas October 6-8 as well as during Glasstec in Duesseldorf. This major new release, based on one single Microsoft SQL Server database, features numerous enhancements and perfectly tackles all of the complex requirements of the window & door, sunroom as well as glass manufacturing industries. FeneVision CORE Version 5 is designed to meet all requirements of the industry and features additional functions such as completely integrated purchasing, extended glass and door configurators, enhanced capacity planning capabilities, improved customer service tools, just to name a few. "We are proud of this new release", says Craig Morris, Director of Engineering for Fenetech Inc. "We have worked very hard to accommodate additional wishes of our large customer base which we have prioritized carefully". FeneVision CORE Version 5 represents a robust and powerful ERP solution that accommodates all the needs and requirements of the window & door, sunroom and glass manufacturing industries. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? 2008 Messe Düsseldorf 2152

35 MyCatalog MyCatalog Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Waidhofen/Ybbs, Austria Softsolution is well known world-wide through intelligent software and technology concepts for the flat glass industry. Products include Virtual Digitizing (from a digital photo to a CNC cut and processed template), SCAD (powerful CAD/CAM system for non standard shapes), LSC LineScanner (measuring and defect detection scanning solution) and other products. The company has just concluded an exclusive cooperation agreement with FeneTech Inc. for the North American market, including the US, Canada and Mexico. Effective immediately FeneTech Inc. will take over all sales, service and support activities for Softsolution products in these territories. Christian Krenn, Sales Manager of SOFTSOLUTION states: Softsolution always tries to form alliances with professionally organized, well known and established sales partners for market places world-wide. After the first meeting with the management of Fenetech Inc., we immediately knew that this is the right partner for us. We are proud in announcing this partnership with Fenetech Inc., who has been voted the #1 software company in terms of meeting full customer satisfaction and offering excellent service and support. Together we are now able to serve these markets perfectly and introduce our new highly innovative technology, such as the LSC LineScanner to the North American market place. Ron Crowl, President of Fenetech Inc. adds: When evaluating potential partners we look for companies that bring significant new technology that can add tremendous value to existing as well as future clients, as well as the ability to integrate this technology into our core FeneVision family of software products. Softsolution is a well respected global company, FeneTech is pleased to have the opportunity to bring their innovative products to the North American market. At FeneTech, we pride ourselves in providing excellent customer service and support and we see this same customer focus in Softsolution s corporate culture making this partnership a sure win for North American glass fabricators. Horst Mertes, responsible for the newly launched FeneVision GLASS ERP solution for FeneTech Inc. in North America and on world-wide markets comments: I have had many years of excellent experience with the management and staff members of Softsolution and all of their products. This cooperation will be the perfect fit for the industry. For more information contact us: SOFTSOLUTION technical software products GmbH Kapuzinergasse 6 A Waidhofen/Ybbs Austria SOFTSOLUTION FeneTech Inc Danner Drive Aurora, OH USA 2008 Messe Düsseldorf 2153

36 MyCatalog MyCatalog Or visit us at GLASSBUILD America, Las Vegas Convention Center, October 6-8, Booths 254 & 438 or Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login FOR.EL S.p.A. Address Via per Monastier, Vallio di Roncade / TV Italy Telephone Fax Internet Address Booth Hall 16 C Cutting technology for laminated safety glass Devices for coating removal Drilling technology Grinding techniques for straight edges Water treatment for grinding technology Complete plant for insulating glass production Production equipment for insulating glass frames Edge deletion equipment Gas filling machines and gas devices Sealing techniques Laminated glass technology with foil for architectural glass Foil treating technology (storing, climate, uncoiling) Washing machines and equipment Software Control and automation technology Optimization systems for cutting and yield Process control systems 2008 Messe Düsseldorf 2154

37 MyCatalog MyCatalog Control and automation technology ART. AL6001 AL3201 VERTICAL AUTOMATIC LOADER Automatic machine which transfers sheet glass from a storage system to either a vertical or horizontal cutting table in a safe and functional manner. For.El. s automatic loaders are capable of retrieving sheet glass placed in a vertical position and in packed form. This is achieved thanks to a series of suction cups and a particular and patented sequence of movements. Articles AL6001 and AL60H1 differ from each other essentially in how the glass sheet is finally unloaded: the first type unloads the glass sheet in a vertical position, the second unloads the glass horizontally. All this is carried out with the maximum of safety thanks also to a system which ensures suction power at all times; furthermore a unique and specially conceived combined system of lifting and tilting of For.El. s loaders ensures that only one sheet is picked up at a time. Combining the loader to the vertical cutting line and stock selecting system (Art._VC and Art._ST) further enhances the superb characteristics of the vertical loader: For.El. alone, offers the possibility of handling glass sheets in vertical from storage to final cutting in a complete and automatic way. The use of a PC and specially devised software offers other functions such as COMMAND, DIAGNOSTICS and STATISTIC MANAGEMENT of the machine in order to optimise production. COMPANY NEWS Wie immer erfüllt For.El. die Erwartungen des Sektors. Auf der nächsten Glasstec (Halle 16 Stand C19-D05) werden die Neuheiten und wichtige Errungenschaften vorgestellt und das Unternehmen bringt sich auf dem Weltmarkt einmal mehr als Partner ins Spiel, der die Anforderungen der Isolierglasindustrie mit einem vollständigen Sortiment von Automatisierungen und Prozessen für Produkte mit hohen energiesparenden Leistungen erfüllt. Dieser Weg begann vor vielen Jahren: in den Achtziger Jahren begann For.El. seine Forschung im Bereich Wärmeisolierung mit der Erforschung nach Alternativen zu den klassischen Distanzstück-Systemen und entwickelte in den Neunzigern die automatischen Gaseinfüllung zwischen den beiden Scheiben. Im letzten Jahrzehnt erreichte das Unternehmen des Isolierglas mit heißer Kante, Dreifachverglasung und Anlagen für den Zusammenbau von Isolierplatten mit reduziertem Wärme- und Schallleitungskoeffizient, der die Ergebnisse der Maurerei überragt. Automatisierung, Personalisierung und Innovation: Das sind die Stärken von For.El. In Düsseldorf werden die neuesten Lösungen vorgestellt sein. Sie unterscheiden sich für die große Aufmerksamkeit auf Bearbeitungsqualität zusammen mit Produkteigenschaften, die die internationalen Richtlinien um das Energiesparen übertreffen. Die Geschichte und die Zukunft unseres Unternehmens sind eng mit einer Gruppe von Personen verbunden, die die technologische Forschung sorgfältig und kompetent verfolgen bekräftigt der Geschäftsführer Fortunato Vianello die konstante Investition von Ressourcen zu diesem Zweck hat uns schon immer zu Vorteilen gegenüber unseren Mitbewerbern und gegenüber den Bedürfnissen des Marktes verholfen. Was in der Vergangenheit ein Ziel zu sein schien, genügt heute nicht mehr: die Entwicklung von For.El. geht weiter. For.El. begrüßt seine Gäste in einem Bereich von über 1200 m2, in dem sich Vorführungen der verschiedenen Bearbeitungslinien abwechseln: Isolierglas Standard und warm-edge, Verbundglas, Vertikalschnitt und Kantenbearbeitung. Im Jahr 2007 stellte das italienische Unternehmen seine Verbundglaslinie vor, eine moderne Anlage, um mit großer Leichtigkeit unterschiedliche Arten von Spezialglas zu bearbeiten. Auf der Glasstec 2008 werden einige neu überarbeitete und aktualisierte Bearbeitungsprozesse mit verbesserten Leistungen vorgestellt, die eine Darstellung des ständigen Entwicklungsprojekts dieses Unternehmens sind. Bei der Plattenbearbeitung eines Industrieglasherstellers fungiert die Vertikalschnittanlage für Verbundglas als Schnittstelle zwischen Lager und Beschicker und ermöglicht eine sichere und automatische Bewegung. Die Leistungen wurden optimiert und erreichen einen Schnitt von 1000 m2 in einem Produktionszyklus von angenommenen 8 Stunden täglich (bei Platten mit einer durchschnittlichen Größe von 1 m2), mit nur zwei daran beteiligten Mitarbeitern. Als Herzstück des Geschäftes von For.El. gilt die Herstellungsanlage von Isolierglas, die für die Bearbeitung von großen Glasplatten optimiert wurde, die vor wenigen Jahren noch undenkbar waren. Daraus ergibt sich die Zusammensetzung von hochwertigen Glasplatten mit einem außergewöhnlichen thermischen und akustischen 2008 Messe Düsseldorf 2155

38 MyCatalog MyCatalog Isolierungskoeffizienten. Es wird auch der neue Sondernformscanner betriebsbereit zur Verfügung stehen. Dieser erkennt die Platten automatisch und braucht keine vorherige Eingabe von Auftragsdaten mittels Software. Der Prozess läuft unverzüglich an und liefert die Daten den in Reihe gestellten Maschinen, die die nachfolgenden Arbeiten ausführen. Eine weitere exklusive Neuheit stellt der in der Anlage integrierte Scanner zur Oberflaechenfehlerkennung dar, der folgende Mängel erkennt: jede Kratzer und Unreinheit der wird prüft und klassifiziert und dann werden die Bilderdateien in einer Datenbank abspeichert. Die Kontrolle durch den Scanner vermindert merklich die Mängel auf den Isolierglasplatten. Nach dem Prototyp der Glassex / Gp&T 2008 erwartet man mit großer Spannung die Präsentation des automatischen Applikators Serie TBB in seiner industrialisierten Ausgabe. Dieser liefert völlig automatisch das Profil des Distanzstücks T-Spacer des amerikanischen Unternehmens Edgetech dem Umfang des Glases entlang, das für den Zuschnitt der Isolierglasplatten und auch für Strukturfassaden benötigt wird. Mit Spannung wird auch die Zusammensetzung von versetztem Isolierglas erwartet: Die neue Plattenpresse mit Gasfüllung für Strukturglas Serie APGS kuppelt in einem einzigen Arbeitsgang die Platten und befüllt sie gleichzeitig mit einem über dem Marktstandard liegenden Anteil an Gas (Argon oder Krypton). Im Bereich der Randbearbeitung besteht die Neuheit in der Vertikalschleifmaschine Serie EM, die sich durch ihre fortlaufende und vollständige Bearbeitung der Ränder von sowohl geradlinigen wie auch gemoldeten Gläsern ohne das Stück selbst zu bewegen, auszeichnet. Mann kann so die glatten Industriekante sowie die Justierung der Platte erziehen zusammen mit einer großen Reduzierung der Bearbeitungszeiten. Um den Kreis zu schließen, bietet For.El. zur Unterstützung der Organisation innerhalb der Glasproduktion ein einfaches und vollständiges Software-Verwaltungspaket an, mit vielen personalisierbaren Funktionen und einer äußerst verständlichen Schnittstelle, die in Zusammenarbeit mit einem schon bekannten Softwarehaus entwickelt wurde. Damit vervollständigt das Unternehmen For.El. sein Produktsortiment und seine Leistungen, mit denen es seine Rolle als Wettbewerbsfähigkeit versehendes Unternehmen bekräftigt. Glasstec Düsseldorf Deutschland, Oktober 2008 (ele.value == "Standauftrags-Nr.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login für Aussteller Ident-Nr.: Standauftrags-Nr.: Passwort: Fragen zum Passwort und zum OOS? Tel.:+49/ Online-Support für Besucher & Presse Login: Passwort: Passwort vergessen? Benutzerkonto einrichten Pressezugang beantragen Service Linksnach obendatenschutznutzungsbedingungenseite druckenseite empfehlen Messe Düsseldorf Mehr Informationen Suche Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident-Nr.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if 2008 Messe Düsseldorf 2156

39 MyCatalog MyCatalog Glasstec 2008 For.El. in the energy saving age. Catering, as always, to the demands of the industry, For.El. announces the presentation of a series of breakthroughs and old mainstays at the forthcoming Glasstec event (Hall 16 Stand C19-D05). For.El., a major player on the world market, has always been able to satisfy the demands of the double-glazing industry and now proposes a complete range of automations and processes designed to obtain a highly performing product in terms of energy saving. All this is possible thanks to experience acquired over many years. For.El. research in the field of warm edge began in the 1980s with focus on finding alternative solutions to classic spacers, and continued in the 90s with the introduction of the spacer automatic gas filling, and during the last decade with the success of the warm-edge insulating glazing, triple-glazing and manufacturing systems for insulating panels that achieve a very low heat and noise conduction coefficient with results that exceed those achieved by building masonry. Automation, personalization and innovation are For.El. strength points; in Dusseldorf the company will be presenting the very latest solutions, with main focus on the processing quality whose finished product excels the international energy-saving standards. The history and future of our company are closely tied to a team of people keenly focused and capable of pursuing technological research says director Fortunato Vianello the ongoing investment of resources in this direction has always provided us with an advantage over our competitors and with respect to market demands. What in the past was considered a point of arrival is no longer enough; For.El. keeps on moving ahead. For.El. will be welcoming visitors in an area of over 1200 square metres, where demos of the various production lines will be staged: standard and warm-edge insulating glazing, lamination, vertical cutting and edge machining. In 2007, the company presented the lamination line, a modern system able to work with many different types of special glazing in a very simple way. A number of machining processes, redesigned and updated to upgrade performance will be on show at Glasstec 2008, to highlight the company strong commitment toward innovation and progress. Considering the work process of a glass manufacturing industry, we will find first the vertical cutting line for laminated glass interfaced with the storage warehouse and the loader for safe and automatic handling. Performances have been optimised and achieve a cutting capacity of more than 1000 square metres in a o hours production cycle (sheets of average dimension 1 square metre), employing just two operators. Then we proceed with For.El core business: the insulating glass production line which has been optimised too for the production of panels of incredible dimensions, just unthinkable few years ago as well as for the assembling of top-quality panels whose heat and sound dampening coefficient results being excellent. The scanner for identifying shapes and dimensions will be also installed in line. It automatically identifies the sheets of glass without having to enter the order data via software. The identification of the shape is immediate providing all the information to the following machines in order to complete the whole process. Another big novelty is the in-line quality control scanner with integrated shape identification feature which checks and classifies any faults such as scratches and impurities affecting each single glass sheet and records the image files in a database. Scanner control considerably reduces any possible faults in the double-glazing panels. After the prototype presented at Glassex / Gp&T 2008, big expectations for the presentation of the automatic applicator series TBB in its industrialised version, which automatically positions the T-Spacer spacer profile of the US company Edgetech along the perimeter of the glass to make both insulating glass panels and curtain walls. Close focus has also been placed on the composition of the staggered insulating glass: the new gas filling press for structural glazing series APGS which couples together the panels injecting gas (Argon or Krypton) inside, all in one operation, with filling percentages above market standards. In the edge-working sector, the breakthrough is represented by the vertical grinding unit series EM distinguished by continuous and complete edge machining on both straight and shaped glass without handling it, obtaining the industrial polished edge and the squaring up of the sheet, while considerably cutting operating time and respecting the production schedule of insulating glass systems. Finally, in order to support the productive organisation of the glass manufacturers, For.El. presents a simple and complete management software package with numerous personalised functions and a highly intuitive interface, created thanks to cooperation with a famous industry software house, which fully completes the range of For.El. products and services, and reiterates the company role as supplier of competitiveness. Glasstec Düsseldorf Germany, October 2008 Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: 2008 Messe Düsseldorf 2157

40 MyCatalog MyCatalog Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Fraunhofer-Institut für Informations- und Datenverarbeitung IITB Address Fraunhofer Str Karlsruhe Germany Telephone Fax Internet Address Booth Hall 13 E Components and accessories (suppliers to the glass machinery industry) Measurement and control of glass colour Surface, contour and imperfection measurement and control Research institutes and projects Surface, contour and imperfection measurement and control Inspektion von texturierten Oberflächen auf 3-D-Fehlstellen Aufgabenstellung Bei der Inspektion von Oberflächen müssen Fehlstellen sicher von Bei der Inspektion von Oberflächen müssen Fehlstellen sicher von zulässigen Störungen im Aussehen des Prüflings unterschieden werden. So können Verfärbungen zugelassen sein, Glanzstellen und Dellen jedoch nicht. Bei der Inspektion von Oberflächen müssen Fehlstellen sicher von Lösung Bei der Inspektion von Oberflächen müssen Fehlstellen sicher von Ein menschlicher Prüfer würde ein schwierig zu beurteilendes Objekt aus unterschiedlichen Richtungen betrachten. Diese Vorgehensweise ist Vorbild für das eingesetzte Verfahren des fotometrisches Stereo. Dazu wird die zu prüfende Oberfläche aus verschiedenen Richtungen beleuchtet, wobei die Richtungen farblich oder zeitlich unterschieden werden. Durch Vergleich der aus verschiedenen Richtungen beleuchteten Bilder erreicht man eine höhere Erkennungssicherheit, eine bessere Unterscheidung verschiedener Fehlerarten und eine Reduktion der Falschalarmrate. Dabei bleiben hohe Ortsauflösung und Prüfgeschwindigkeit erhalten. Bei der Inspektion von Oberflächen müssen Fehlstellen sicher von Einsatzfelder Bei der Inspektion von Oberflächen müssen Fehlstellen sicher von Besonders gut geeignet erweist sich die Vorgehensweise bei der Inspektion von Oberflächen, die im wesentlichen eben sind. Dazu gehören zum Beispiel Bahnen oder Zuschnitte aus Metall, Bodenbeläge und Laminate. Gedevelop AB Address Florettgatan 27 A Helsingborg Sweden Telephone Fax Internet Address Booth Hall 13 C Messe Düsseldorf 2158

41 MyCatalog MyCatalog Gob feeder Aids for the forming of hollow glass Glass wool technology Components and accessories (suppliers to the glass machinery industry) Software Glass and mineral fibres (general) Measurement and control of glass position detection Measurement and control of glass thickness Measurement and control of glass temperature Measurement and control of speed Surface, contour and imperfection measurement and control Control and automation technology Measurement and control of glass position detection Glass Flow Measurement The GFM is a non contact, optical measurement system that measures the mass flow of the hot molten glass that falls from the bushing into the fiberizer. The camera, which is looking at the glass stream, reads information for stream diameter and stream velocity. This information is sent to the central unit for signal conditioning and processing by a powerful micro computer which, with the help of a set of configuration and calibration parameters, calculates the glass flow. The GFM Glass Flow Measurement System is available in two different configurations: One for up to 3 cameras and another for up to 10 cameras. Glass Service Inc. Address Rokytnice Vsetin Czech Republic Telephone Fax Internet Address Booth Hall 15 C Laboratory equipment Smelting technology for tank furnaces Smelting technology for pot furnaces Inspection, protocolling and diagnostic systems Process control systems 06 Contracting, consulting, engineering Process control systems Laboratory Redox Measurement by GS Rapidox II Your problem - our solution GS Rapidox II can be used for a variety of applications in the glass industry including: Batch Redox control for the characterisation of "unknown" components, such as recycled cullet and filter dust, an aspect of importance to container glass producers. Monitoring of the melting process by analysis of scoop samples taken from the melting tank, e.g. during a colour change of a container and a float glass furnace. Evaluation of the samples taken from the feeder and the final glass products, important in obtaining a stable forming process and for ensuring consistent colour quality Messe Düsseldorf 2159

42 MyCatalog MyCatalog Glass Technologies S.r.l. Measurements for: Container glass GS Rapidox II has been successfully applied on a routine basis for measuring the reducing power of organic and other pollutants which may be present in the cullet. Values measured can be used to correct the batch "recipe" in order to stabilize the colour and fining of the melt. Float glass GS Rapidox II measurements can be of benefit in controlling the fining and foaming processes which take place during float glass melting. Oxygen partial pressure in glasses as a function of temperature relates to the addition of fining agents such as sulphates and minor amounts of coke or blast furnace slag. Fiber glass GS Rapidox II measurements can be of benefit in controlling foaming processes. Besides this the GS Rapidox II measurement can show the effects of different raw materials and scrap recycling on the radiative properties of the fibers during the forming process and also fiber breakage. Tv glass Fining efficiency of antimony and nitrates often used for TV glass production can be monitored by measuring the change in Oxygen activity in the melt with increasing temperature. Speciality glasses GS Rapidox II can be a valuable tool in optimizing the production of a variety of speciality glasses ranging from fiber glass to domestic high quality tableware. Address Via J. Massarenti, Piacenza Italy Telephone Fax Internet Address Booth Hall 13 F Batch charging technology Forehearth technology Smelting technology for tank furnaces Gas equipment and supply systems Regenerative systems Recuperative systems Electrically heated systems Combustion technology for oil and gas fired smelting furnaces NOx control technology Processing of water cooling for cullet treatment Feeder colouring Measurement and control of glass temperature Control and automation technology 06 Contracting, consulting, engineering Control and automation technology batch plant GT ICS 2008 Messe Düsseldorf 2160

43 MyCatalog MyCatalog The control system is necessary in order to achieve the best performances for what efficiency and reliability are concerned need any knowledge about photoelasticity or stress analysis. The polariscope is delivered together with a laptop computer and software to control the measurements. Glaston Corporation Glasstress Ltd. Address 21, Akadeemia Tee Tallin Estonia Telephone Fax Internet Address Booth Hall 12 D Inspection systems Measuring devices to be used on site Measuring devices to be used on site Automatic transmission polariscope AP-06C Polariscope AP-06C is a computer controlled device designed for automatic stress measurement in solid and hollow axisymmetric glass products (drinking glasses, bottles, neck tubes of CRT bulbs, lamps, optical fibre preforms, etc.). It permits also edge stress measurement in glass plates and automotive glazing, thickness stress measurement in strips cut out from glass plates, and measurement of stress at edge corners. Photoelastic measurements are completely automatic and take from 2 to 10 seconds. After that stress distiribution in any section of the test object can be displayed on the screen. Diameter of the field of view is 70 mm. The measurement area can be easily displaced using the coordinate device with digital readout. Modern integrated photoelasticity algorithms are used for stress calculation from the measurement data. The polariscope can be used for stress measurement near the production line. Its handling does not Address Vehmaistenkatu Tampere Finland Telephone Fax Internet Address Booth Hall 16 C Optimization of glass cutting and glass production yield Cutting technology for float glass Cutting technology for laminated safety glass Mechanical snapping devices Drilling technology Furnaces for thermal pre-tempering of glass Laminated glass technology with foil for architectural glass Laminated glass technology with adhesives, casting resin and laminate Autoclaves Tools Software Production equipment for solar technology Grinding technology Cutting, grinding and drilling tools CNC control for handling machines MRP/CAD/CIM systems Optimization systems for cutting and yield 2008 Messe Düsseldorf 2161

44 MyCatalog MyCatalog Process control systems Other control systems CNC control for handling machines ALPA 315 /4N ALPA 315 /4N is a multifunction centre for machining glass. Alpa has been designed for drilling, milling, edge finishing, bevelling, geometric and artistic engraving, shaped pockets and disk cutting. The new N series has its roots in the well-known, consolidated and reliable technology of Bavelloni s NC machines, and includes some important new development to the client/user s advantage. Presetting: a single device for horizontal and vertical presetting Protection devices: complete closure of machine, and removal of photoelectric cells New console with PC and NC Digital controls Benefits: The new NC control with PC offers performance, flexiblity and user-friendliness, because whilst the NC manages and calculates machine movements (performance and excellent reliability), the PC communicates with the operator (user-friendliness) in a way that is easy and intuitive, with its Windows interface and simple, modern colour graphic pages. This solution offers the following advantages: familiar Windows interface through which run the machine floppy disk and CD drives for recording/transmitting data keyboard and mouse possibility of linking up to a modem (tele-assistance) connection to company IT network for data sharing connection with office to monitor machine status AUTOMATIC POSITIONING OF SUCTION CUPS A new patended system, unique in the world, to position suction cups and centering devices on the work table in a completely automatic way. Thanks to technology of the 4th axis and dedicated software, the operation is very easy and accurate, saving a lot of time and labour to the operator. Graphikon GmbH Address Mandelstr Berlin Germany Telephone Fax Internet Address Booth Hall 13 D Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control G/Glas Glasinspektion Aufgabenstellung Flachglasscheiben unterschiedlichster Formate sollen auf Kratzer, Knoten, Blasen und Beschichtungsfehler untersucht werden. Die Prüfung soll direkt im Produktionsprozess erfolgen. Lösung Die Bildaufnahme erfolgt mit einer über der Förderlinie angebrachten Zeilenkamera. Je nach Anforderung können auch mehrere Kameras nebeneinander eingesetzt werden. Die Glasfehler werden mit einer Linienbeleuchtung im Durchlichtverfahren visualisiert. Für Spiegelglas und einige Beschichtungen wird ein vergleichbares Auflichtverfahren eingesetzt. Mit einer Auflösung von 0,1 mm pro Bildpunkt können 2008 Messe Düsseldorf 2162

45 MyCatalog MyCatalog alle mit dem Auge sichtbaren Glasfehler erkannt werden. Für anspruchsvollere Anwendungen ist auch eine höhere Genauigkeit wählbar. Die Bildaufnahme erfolgt während der prozesstypischen Förderung der Scheiben. Vorteile Robuste Detektion von allen relevanten Fehlerarten Geeignet für alle Arten von Flachglas Geeignet für alle Scheibenabmessungen Geeignet für viele Beschichtungen Lückenlose Überwachung der Glasqualität Frühzeitige Erkennung von Prozessstörungen Leicht adaptierbar auf spezifische Anforderungen Einfache Prozessintegration Standard Datenschnittstelle für SPC Transport and handling systems Cutting technology for float glass Mechanical snapping devices Laser-isolating technology Vacuum coating equipment Laminated glass technology with foil for architectural glass Foil treating technology (storing, climate, uncoiling) Production equipment for solar technology Measurement and control of glass thickness Measurement and control of speed Measurement and control of glass tension Surface, contour and imperfection measurement and control MRP machine and transport adjustment CNC control for handling machines Optimization systems for cutting and yield 08 hnology live Grenzebach Maschinenbau GmbH Address Albanusstr Asbach-Bäumenheim Germany Telephone Fax Internet Address Booth Hall 15 C Optimization of glass cutting and glass production yield Inspection systems Paper applying machines Stacking machines Feeding and stacking systems 2008 Messe Düsseldorf 2163

46 MyCatalog MyCatalog COMPANY NEWS In Spring 2008 Grenzebach celebrated a very special day: the 20th birthday of Grenzebach Corporation in Newnan, Georgia USA. On this occasion CEO Stefan Grenzebach welcomed colleagues from the parent company in Germany and from other affiliates of the Group as well as high rank guests and business partners. Unfortunately the owner and founder of the company, Rudolf Grenzebach was unable to attend himself, but in his speech, which was read by his daughter, the many guests learned how the small American firm developed from humble beginnings into a successful company with a staff of more than 100. The affiliate produces the whole range of Grenzebach technology and together with the parent company and the other sites in Germany, China and India supplies customers all over the world. The Grenzebach team was especially honoured by the visit of Georgia Governor Sonny Perdue who in his speech emphasized the intense connection of the Grenzebach Group with the State of Georgia. Congratulations were also offered by members of the US Congress and the Senate, a representative of the German Federal Ministry of Transport and many others. They all expressed their best wishes for a successful future to the Grenzebach family, to the management and staff of Grenzebach Corporation. The "Grenzebach Buam", a band comprised of employees from the parent company who had travelled all the way from Germany for the occasion, entertained the guests who celebrated Grenzebach's German-American success story. Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: 2008 Messe Düsseldorf 2164

47 MyCatalog MyCatalog In Spring 2008 Grenzebach celebrated a very special day: the 20th birthday of Grenzebach Corporation in Newnan, Georgia USA. On this occasion CEO Stefan Grenzebach welcomed colleagues from the parent company in Germany and from other affiliates of the Group as well as high rank guests and business partners. Unfortunately the owner and founder of the company, Rudolf Grenzebach was unable to attend himself, but in his speech, which was read by his daughter, the many guests learned how the small American firm developed from humble beginnings into a successful company with a staff of more than 100. The affiliate produces the whole range of Grenzebach technology and together with the parent company and the other sites in Germany, China and India supplies customers all over the world. The Grenzebach team was especially honoured by the visit of Georgia Governor Sonny Perdue who in his speech emphasized the intense connection of the Grenzebach Group with the State of Georgia. Congratulations were also offered by members of the US Congress and the Senate, a representative of the German Federal Ministry of Transport and many others. They all expressed their best wishes for a successful future to the Grenzebach family, to the management and staff of Grenzebach Corporation. The "Grenzebach Buam", a band comprised of employees from the parent company who had travelled all the way from Germany for the occasion, entertained the guests who celebrated Grenzebach's German-American success story. Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: 2008 Messe Düsseldorf 2165

48 MyCatalog MyCatalog Einen ganz besonderen Tag konnte Grenzebach im Frühjahr 2008 feiern: die Niederlassung in Newnan, Georgia USA hatte ihr 20jähriges Jubiläum. Zu diesem Anlass begrüßte Geschäftsführer und CEO Stefan Grenzebach Kollegen aus den Stammwerk in Deutschland und weiteren Werken der Grenzebach-Gruppe sowie hochrangige Gäste aus Politik und Wirtschaft. In einem durch seine Tochter überbrachten Grußwort des Firmengründers Rudolf Grenzebach, der selbst leider nicht kommen konnte, erfuhren die Gäste, wie sich die Firma in Amerika aus kleinen Anfängen zu einer Produktionsstätte mit über 100 Mitarbeitern entwickelte. Heute ist Grenzebach Newnan eine wichtige Säule der Grenzebach-Gruppe. Das Zweigwerk deckt das gesamte Spektrum der Grenzebach-Technologie ab und beliefert gemeinsam mit dem Stammwerk und weiteren Niederlassungen in Deutschland, China, Indien Kunden in aller Welt. Besonders geehrt fühlte sich das Grenzebach-Team durch den Besuch des Governors von Georgia, Sonny Perdue, der in seiner Rede auf die enge, gewachsene Verbindung der Grenzebach-Gruppe mit Georgia verwies. Viele weitere Gratulanten - unter ihnen ein Vertreter des amerikanischen Kongresses und des Senats sowie ein Gast aus dem Deutschen Bundesministeriums für Verkehr -, überbrachten der Familie Grenzebach, der Geschäftsführung und den Mitarbeitern von Grenzebach Corporation ihre besten Wüsche für eine erfolgreiche Zukunft. Musikalisch begleitet wurde die Feier durch die "Grenzebach Buam", einer aus Mitarbeitern bestehenden Blaskapelle, die eigens aus dem Stammwerk in Bayern gekommen war, um der deutsch-amerikanischen Erfolgsgeschichte einen entsprechenden Rahmen zu geben. Service Linksnach obendatenschutznutzungsbedingungenseite druckenseite empfehlen Messe Düsseldorf Mehr Informationen Suche Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident-Nr.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Standauftrags-Nr.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login für Aussteller Ident-Nr.: Standauftrags-Nr.: Passwort: Fragen zum Passwort und zum OOS? Tel.:+49/ Online-Support für Besucher & Presse Login: Passwort: Passwort vergessen? Benutzerkonto einrichten Pressezugang beantragen Gronemeyer Maschinenfabrik GmbH & Co. Address Rohrweg Höxter Germany Telephone Fax Internet Address Booth Hall 14 E Transport and handling systems Conveying, sorting and storage facilities Parts for conveying, transport, packing and warehouse technology MRP machine and transport adjustment PLC for complete lines MRP machine and transport adjustment 2008 Messe Düsseldorf 2166

49 MyCatalog MyCatalog PLC programming with various software a.o.: - Siemens Step7, WinCC Flexible - Modicon Modsoft - Mitsubishi GX IEC - Télémechanique PI7 - Easy-Soft, Sucosoft S40 Link zu weiterer Information HEITRONICS, Infrarot Messtechnik GmbH Address Kreuzberger Ring Wiesbaden Germany Telephone Fax Internet Address Booth Hall 12 E31 Quality Control of Ceran Heating Fields Hardening / Tempering in Furnaces KT19.45II Glass temperature measurement without influence of: Reflection Background Radiation Measuring Angle Application: Vacuum Deposition on Glass Quality Control in Float Glass Production Quality Control of Ceran Heating Fields Hardening / Tempering in Furnaces Measurement and control of glass temperature Measurement and control of glass temperature KT15.45IIP Glass temperature measurement without influence of: Reflection Background Radiation Measuring Angle Application: Vacuum Deposition on Glass Quality Control in Float Glass Production 2008 Messe Düsseldorf 2167

50 MyCatalog MyCatalog COMPANY NEWS Wir suchen ab sofort eine/n Sachbearbeiter/-in für die Arbeitsvorbereitung und Auftragsabwicklung Ihre Aufgaben: Fertigungsplanung Erstellen von Arbeitsplänen Koordination der Abwicklungsprozesse Bedarfsplanung und Warenbeschaffung Optimierung von Logistik und Materialfluss Sie sind Schnittstelle zu den Kollegen aus dem Vertrieb, der Technik und der Fertigung Stammdatenpflege ERP-System Wir erwarten: Abgeschlossene technische Berufsausbildung mit Zusatzqualifikation Berufserfahrung, idealerweise in Elektrotechnik Kenntnisse im Bereich Fertigungsplanung, Arbeitsvorbereitung Gute EDV-Kenntnisse (MS-Office) und ERP-System Zielorientiertes und strukturiertes Arbeiten Gute Deutsch- und Englischkenntnisse in Wort und Schrift Flexibilität, Belastbarkeit und Teamfähigkeit Wir bieten: Ein unbefristetes Arbeitsverhältnis bei angemessener Bezahlung Eine sehr selbständige, abwechslungsreiche und verantwortungsvolle Tätigkeit Ihr Einsatzort: HEITRONICS Infrarot Messtechnik GmbH Kreuzberger Ring Wiesbaden-Erbenheim Ihre Bewerbung richten Sie bitte an: HEITRONICS Infrarot Messtechnik GmbH Personalabteilung Kreuzberger Ring Wiesbaden submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident-Nr.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Standauftrags-Nr.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login für Aussteller Ident-Nr.: Standauftrags-Nr.: Passwort: Fragen zum Passwort und zum OOS? Tel.:+49/ Online-Support für Besucher & Presse Login: Passwort: Passwort vergessen? Benutzerkonto einrichten Pressezugang beantragen Service Linksnach obendatenschutznutzungsbedingungenseite druckenseite empfehlen Messe Düsseldorf Mehr Informationen Suche Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function 2008 Messe Düsseldorf 2168

51 MyCatalog MyCatalog The precise temperature control in each production step is an essential tool to control glass properties like internal tension and thus mechanical properties of the glass. Especially during the continuous production of float glass this is realized by the non contact temperature measurement using Infrared Radiation Pyrometers. At temperatures below 300 C Infrared Radiation Pyrometers with a spectral sensitivity around 5 µm exhibit an increased temperature noise. Therefore instruments with a spectral range of 8 14 µm are used for the measurement of this temperature range. On the other hand glass has an increased reflectivity for wavelength > 8.2 µm. Thus background radiation may disturb the measurement and reduces the reliability of the measurement. HEITRONICS therefore offers the Infrared Radiation Pyrometer KT15.43 IIP and the Line Scanner LS12.43 working at a spectral range of µm. At this wavelength glass has a residual reflectivity of less than 3%, while the temperature range of these instruments starts at 0 C, because of the better NETD (Noise Equivalent Temperature Difference) compared to the 5 µm spectral band. Table 1: Emissivity and Reflectivity of glass for different spectral ranges Spectral Range µm µm 8 14 µm Emissivity 0,94 >0,97 0,80 Reflectivity 0,06 <0,03 0,20 Therefore they decided in 2007 to replace their scanner system at the exit of the lehr and the mass air cooling section with two HEITRONICS Line Scanners LS The instruments are used to monitor and control temperature distribution between the end of the lehr and the mass air cooling section. The flexible software of the Line Scanner was an additional argument for this product. The Line Scanners are mounted at a height of about 3 m above the float glass line. They are equipped with a protective and cooling housing, which is only used for mechanical protection. The temperature profiles are displayed on two monitors, one in the control room and one directly placed at the production line, enabling the operators to adjust the control valves of the lehr and the mass air cooling section according to the target values. The precise control of the temperature distribution at this point is necessary to avoid longitudinal cracks of the float glass. This type of crack increases the glass loss significantly and thus has a direct influence to the output. Also the float glass is conditioned for the subsequent cutting steps. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login HELANTEC GMBH Address Werner-von-Siemens-Str. 47a Bruchsal Germany Telephone Fax Internet Address Booth Hall 17 C Messe Düsseldorf 2169

52 MyCatalog MyCatalog Gas filling machines and gas devices Measurement, control and inspection of gas compounds Measurement, control and inspection of gas-filling levels Detectors for laminated glass Control and automation technology Inspection, protocolling and diagnostic systems Measurement, control and inspection of gas-filling levels HELOX 4 KVSN-F Paramagnetische Restsauerstoffmessung Anerkanntes Prüfmittel - Standardmessgerät der offiziellen Prüfinstitute Geeignet für alle Gasarten und Gemische HunterLab, FMS Jansen GmbH & Co. KG Address Griesbräustr Murnau a. Staffelsee Germany Telephone Fax Internet Address Booth Hall 13 E Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control ISO-Altimeter Druckausgleichsgerät für den Scheibeneinbau in großen Höhen Inspection, protocolling and diagnostic systems Kommunikationsmodul 5 Automatische Qualitätskontrolle mit Dokumentation Diagnose und Fernwartung Vielfältige Schnittstellen ColorFlex Das sehr einfach zu bedienende ColorFlex ist ein spektrales, netzunabhängiges, Farbmessgerät. Es handelt sich um ein echtes Zweistrahl Messsystem mit holografischem Gitter und Diodenarray (mit interner 3mm Auflösung). Die auswechselbare Xenon Blitzlampe ist für etwa Messungen ausgelegt. Das Gerät ist den Normen entsprechend mit Kugelgeometrie oder 45/0 - Geometrie erhältlich. Das ColorFlex hat einen Ausgang zur Ausgabe der Spektraldaten von 400 bis 700nm in 10nm Schritten und speichert bis zu 990 Proben. Über die serielle Schnittstelle (RS 232) können die Messdaten direkt auf einen externen Drucker oder auf einen PC übertragen werden. Das ColorFlex verfügt über ein sehr gut ablesbares, großes LCD Display für die Darstellung der echten Pass/Fail Funktion, Absolutfarbwerte, Farbdifferenzwerte, Spektraldaten, Spektralkurven und für die grafische Darstellung der Farbabweichung im Hunter Lab bzw. CIE L*a*b* Farbraum. Die Stromversorgung erfolgt über ein externes 120/220 V AC Netzteil oder optional über wideraufladbare, austauschbare NiCd Zellen (externer Anschluss). HighlightsKompakte und robuste BauformExzellente praktische HandhabungDiffus/8 - und 45 /0 - GeometrieVariante 45 /0 GeometrieCFLX-45-LAV: Messöffnung 31.8mm, Messfläche 25.0mm 2008 Messe Düsseldorf 2170

53 MyCatalog MyCatalog MiniScan XE Plus Unser vielseitig einsetzbares Handgerät MiniScan XE Plus ist für eine Vielzahl von Anwendungen hervorragend geeignet. Das erstmals 1989 erschienene Handgerät MiniScan war der Vorläufer aller heutigen tragbaren Farbmessgeräte. HunterLab hat dieses Konzept konsequent weiterentwickelt, ohne dabei jedoch die Grundvorteile des Originals von damals zu vernachlässigen: HighlightsEinfachste BedienungExzellente praktische HandhabungRobustes DesignDiffus/8 - und 45 /0 - GeometrieVariante 45 /0 GeometrieMSXP-45-LAV: Messöffnung 31.8mm, Messfläche 25.0mmMSXP-45-SAV: Messöffnung 6.0mm, Messfläche 5.0mm i2s Linescan Address rue Jean Perrin Pessac Cedex France Telephone Fax Internet Address Booth Hall 13 D Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control FLAWSCANTM In today's highly competitive web materials manufacturing markets, it is vital to ensure that customers receive consistent, high quality, defect free product. i2s' FLAWSCANTM surface inspection (or web inspection) systems provide a complete range of solutions for 100% surface defect detection and production documentation. Our family of products includes simple cost effective systems for simple surface defect inspection applications up to high end advanced surface inspection (web inspection) systems for high speed, wide webs and low contrast defects. Benefits of choosing FLAWSCANTM: 100% surface inspection at various manufacturing steps Immediate defect detection, classification, and visu alization Identification of defect causes resulting in improved manufacturing processes Reduced customer returns and complaints Early rejection of defective material before adding value Human inspection eliminated Documented process and detailed statistical analysis ilis GmbH Address Konrad-Zuse-Str Erlangen Germany Telephone Fax Internet Address Booth Hall 13 D Batch calculation and glass property prediction Measurement and control of glass thickness Measurement and control of glass tension Measurement and control of glass colour Measurement and control of glass tension Automatische und objektive Messung der Restspannungen in Gla 2008 Messe Düsseldorf 2171

54 MyCatalog MyCatalog Automatische Bestimmung und farbcodierte Darstellung der SpannungsverteilungBerechnung von Polarisationswinkel, Tempergrad, optischem Gangunterschied und SpannungArtikelbezogene Eingabe und Speicherung aller Parameter in MessvorschriftenEingabe von Dickenprofilen zur punktgenauen Berücksichtigung der WandstärkeDefinition von Grenzwerten zur Gut/Schlecht-BewertungDatenbank zur automatischen Archivierung aller Ergebnisse IMPAC Infrared GmbH Address Kleyerstr Frankfurt am Main Germany Telephone Fax Internet Address Booth Hall 12 C Measurement and control of glass temperature Measurement and control of glass temperature Pyrometers-Portables IS 8 plus temperature ranges between 600 and 2500 CHigh accuracyview finder with display for temperature or emissivityfocusable precision opticssmall spot sizes min. 0.8 mmdigital display on the housingextremely short response time: 1 msintegrated maximum value storagedigital interface RS232Optional: analysing software PortaWin The series 8 pyrometers are high quality, battery driven portables for non-contact temperature measurement between 300 and 2500 C. The aluminum die-cast housing is specially designed for the daily use under rough industrial conditions. The easy focusable precision optics provides small spot sizes for measuring distances between 500 mm and. The bright, optimized view finder with exact spot indication and built-in temperature display facilitates the accurate aimin on the object. The extremely short response time of 1 ms allows exact measurements of fast moving objects. The maximum temperature can be stored in the built-in peak picker (maximum value storage). The instruments are mainly used in the steel-, glass, forging industry and in foundries. For high temperatures the IS 8 plus is available in two temperature ranges between 600 and 2500 C, for the medium temperatures the IGA 8 plus with a range from 300 to 1300 C. The IS 8-GS plus is a special version for the use in foundries, the IS 8-K plus is for the use in coking plants. Typical applications for metals: preheating, tempering, hardening, normalizingforging, brazingsinteringmeltingwelding, rollingfounding Typical applications for glass: molton glassglass gobglass moulds InSystems Automation GmbH Address Rudower Chaussee Berlin Germany Telephone Fax Internet Address Booth Hall 11 D Laser-marking technology Production equipment for solar technology MRP machine and transport adjustment Process control systems 2008 Messe Düsseldorf 2172

55 MyCatalog MyCatalog MRP machine and transport adjustment SPS und Schnittstellenprogrammierung InSystems Automation programmiert u.a. SPS-Steuerungen S7, Beckhoff, Allen Bradley und hat bereits sehr viele PV Produktionsmaschinen mit MES-Schnittstellen ausgerüstet. Dadurch besitzen wir eine umfangreiche Basis von MES-Schnittstellen, die nur noch an spezielle Anforderungen angepasst werden müssen. Wir programmieren SECS/GEM Schnittstellen basierend auf SEMI E10 für Netzwerke über Transportprotokolle XML, OPC oder ADS oder für Profibus. Link zu weiterer Information Process control systems MES-Manufacturing Execution System für Echtzeit-Überwachung für Kontrolle für Analyse Bei der Konfiguration und Systemintegration von MES arbeitet InSystems mit Prediktor zusammen. APIS Click & Trace von Prediktor ist eine weltweit erfolgreiche MES Software und speziell auf die Photovoltaik Produktionsprozesse abgestimmt. Die modular aufgebauten Softwaremodule erfassen alle Maschinenzustände und Prozessdaten nahezu in Echtzeit, werten sie aus und helfen somit, die Produktion stetig zu verbessern. Link zu weiterer Information COMPANY NEWS Zwischen dem norwegischen MES Softwareentwickler Prediktor AS und dem Berliner Automatisierungsspezialisten InSystems Automation GmbH wurde ein Joint Venture unterzeichnet. Ziel des Joint Ventures ist es, den in Deutschland entstehenden Solarfabriken die speziell für die Photovoltaikindustrie entwickelte und erfolgreich erprobte MES Software APIS anzubieten. Ein Manufacturing Execution System (MES) ist für jede PV Fabrik unverzichtbarer Bestandteil der Produktionsoptimierung. Durch die Erfassung aller Produktionsdaten können Produktionsergebnisse analysiert werden und Relationen zwischen Prozesswerten und Materialeigenschaften erkannt werden. Prediktor AS aus Norwegen beschäftigt sich seit mehr als 7 Jahren mit der Entwicklung von MES und hat bereits mehrere MES Installationen bei PV Fabriken in Norwegen und Deutschland erfolgreich realisiert. InSystems Automation GmbH ist seit 1999 mit der Programmierung von Maschinensteuerungen und MES Interfaces erfolgreich. Sie wird ihre Erfahrungen in die Projektleitung, den Service und in die Interfaceintegration einbringen. Die Kunden bekommen so als Mehrwert nicht nur einen deutschsprachigen Ansprechpartner, sondern profitieren von der norwegischen und deutschen Erfahrungssynergie in der Photovoltaik. Die gemeinsame Prediktor GmbH bietet seit dem den Vertrieb, das Projektmanagement und den Service von MES Systemen aus einer Hand vom Wirtschafts- und Hochtechnologiepark Berlin-Adlershof aus an.. Weitere Informationen auf: Service Linksnach obendatenschutznutzungsbedingungenseite druckenseite empfehlen Messe Düsseldorf Mehr Informationen Suche Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident-Nr.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Standauftrags-Nr.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( 2008 Messe Düsseldorf 2173

56 MyCatalog MyCatalog "loginbox" ); ele.submit(); } Login für Aussteller Ident-Nr.: Standauftrags-Nr.: Passwort: Fragen zum Passwort und zum OOS? Tel.:+49/ Online-Support für Besucher & Presse Login: Passwort: Passwort vergessen? Benutzerkonto einrichten Pressezugang beantragen ISRA SURFACE VISION GmbH Address Albert-Einstein-Allee Herten Germany Telephone Fax Internet Address Booth Hall 15 F Components and accessories for display glass technology Production equipment for solar technology Measurement and control of glass thickness Measurement and control of glass temperature Measurement and control of glass tension Surface, contour and imperfection measurement and control Detectors for laminated glass Surface, contour and imperfection measurement and control SURFACE VISION An homogene, gemusterte, bedruckte, beschichtete oder farbige technische Oberflächen werden im täglichen Marktwettbewerb höchste Qualitätsansprüche gestellt. Kleinste Abweichungen oder Fehler führen zu Produktionsstörungen und damit zu einer Wertminderung. Als Problemlösung finden Sie in unserem Haus neben branchenspezifischen Prozesskenntnissen ausgereifte, vollautomatische, kamerabasierte Inspektionsanlagen für folgende technischen Oberflächen, Oberflächenformen und Produktionsarten: Technische OberflächeOberflächenformProduktionsart Film, FolieHomogenStückgut GlasGemustertSchüttgut KunststoffBeschichtetEndlosgut LackierungenFarbig NonwowensBedruckt PapierLackiert Printprodukte Die Anlagen basieren auf einem einheitlichen Konzept, das auf Standardmodulen und Standardbausteinen aus eigener Herstellung beruht. Aufgrund dieser Bauweise sind alle Anlagen zu einem hohen Grad kundenspezifisch anpassbar. Entscheidende Grundlagen für die hohe Akzeptanz und Performance der Systeme sind die sichere, wiederholgenaue Fehlererkennung, die weltweit einzigartigen Echtzeit-Fähigkeiten sowie die Robustheit und Zuverlässigkeit. Generelle Eigenschaften FehlerklassifikationFehlervisualisierung FehlerdatenbankFehlerprotokollierung Bilddatenbank aufgetretener FehlerEchtzeitverarbeitung Statistische Auswertung der InspektionsgebnisseEinfache Bedienung und Einstellung Integrierbar in vorhandene FertigungsabläufeVollständig über die Bedieneinheit steuer- und überwachbar Ferndiagnose und Fernwartung 2008 Messe Düsseldorf 2174

57 MyCatalog MyCatalog Land Instruments, GB der Ametek GmbH LiteSentry Corporation Address Fixheider Str Leverkusen Germany Telephone Internet Address Fax Booth Hall 12 B33 Address 210 County Road 1, East Dundas, Minnesota USA Telephone Fax Internet Address Booth Hall 13 E Measurement and control of glass temperature Detectors for laminated glass Measurement and control of glass temperature FIBROPTIC MODEL FG THERMOMETER Model FG is designed specifically for measurement in the hostile conditions encountered in the glass industry. It is intended primarily for monitoring and controlling glass and refractory temperatures, principally in the forehearth, but can also be used in the regenerator, tank and refiner. Model FG operates on a simple 4 to 20mA current loop, requires no water cooling and a built-in self-test facility makes routine maintenance an easy task. A versatile adjustable mounting assembly, complete with quick release adapter and air purge, facilitates ease of installation and removal for inspection purposes Production equipment for solar technology Measurement and control of glass position detection Measurement and control of glass thickness Surface, contour and imperfection measurement and control Detectors for laminated glass Process control systems Raven (tm) Sensor The Raven Sensor Measurement and control of glass thickness Glass Thickness, IG Space Thickness & Identification of Coated Surface Surface, contour and imperfection measurement and control Hawkeye Defect Inspection System for Glass 2008 Messe Düsseldorf 2175

58 MyCatalog MyCatalog IG, Lamination & Coating applications. Inspection of surface & included defects. Scratches, digs, blemishes, coating voids, seeds, stones, bubbles, tin spots, edge grind skips... MARPOSS GmbH Address Mercedesstr Weinstadt Germany Telephone Fax Internet Address Osprey(tm) Distortion Measurement System Osprey(tm) Distortion Measurement System Tempering/Toughening, Lamination & Solar Applications. Measures all types of distortion, including roll wave, local bow, edge kink, picture frame, pocket, hammer... Industry standard. Booth Hall 12 A Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control Process control systems Owl Mass Measurement & Closed-Loop System Tempered Glass Batch Process Control. Measures thickness, lowe coating & area of glass. Sends information to the furnace for recipe selection and tempering optimization. E9066N FLAT PANEL VIELSEITIG Der modulare Aufbau des E9066 passt sich Ihren Anforderungen an. Das System wird seit langer Zeit erfolgreich in folgenden Bereichen eingesetzt: DatenaufnahmeFertigungssteuerungenFertigungsautomatisierungenKOMMUNIKATIV Alles dreht sich um die Kommunikation mit und zwischen den vorhandenen Systemen. Das E9066 ist dafür mit den folgenden Schnittstellen bestens gerüstet:zwei LAN mit Ethernet 10/100 Mbps4 USB Schnittstellen4 serielle Schnittstellen (2 x RS232, 2 x RS232/485) und eine parallele Schnittstelle. Außerdem kann in die Frontplatte eine Industriemaus (IP 65) und ein Touch Screen.LANGLEBIG Das E9066 Flat Panel wurde für den Einsatz in rauer Umgebung entwickelt. Mit seinem vernickelten Stahlgehäuse und einer Frontplatte aus Aluminium und Polyester (IP65) widersteht es den Umwelteinflüssen in der Fertigung und erfüllt alle internationalen Richtlinien für die EMV und Sicherheit. Darüber hinaus ist die Verfügbarkeit von Ersatzteilen für diesen Marposs Industrie PC langfristig gewährleistet da sie nicht von dem schnelllebigen PC Markt abhängig sind. Dadurch ist ihre Investition auch in Zukunft gesichert. E9066T 2008 Messe Düsseldorf 2176

59 MyCatalog MyCatalog DIE LEISTUNGSSTARKE BASIS FÜR IHR MESSSYSTEM Das E9066T ist die ideale Ergänzung für die Messtasterboxen MARPOSS Gage Box und Easy Box. Über die einfache Bedienoberfläche von Quick SPC ist ihre anwendung in nur wenigen Arbeitsschritten zusammengestellt. MINIMALER PLATZBEDARF Mit nur 50mm Tiefe ist das E9066T auch für Messplätze mit eingeschränktem Platzbedarf geeignet. Dabei werden in der Leistung und Funktionalität keine Kompromisse gemacht. Wegen der kleinen Abmessungen kann das E9066T für die Montage an die Wand, im Bedienfeld, am Schwenkarm oder einfach als Tischgerät verwendet werden. MAXIMALE ERWEITERUNGSMÖGLICHKEITEN In der Standardausführung hat das E9066t eine 15" LCD TFT Anzeige, 512MB RAM zwei integrierten Ethernet Netzwerk Anschlüsse, eine integrierte Fieldbus Anschluß, sechs USB Anschlüsse und die üblichen Anschlüsse für Maus, Tastatur und Drucker. Als Optionen sind für Monitor 17" LCD TFT, Touch Screen, Erweiterungsslots, verschiedene Massenspeicherversionen und Solid State Speicher verfügbar. Das E9066T ist Teil einer neuen innovativen Familie von kleinen, modularen und zuverlässigen Industrierechnern für die Datenerfassung und Fertigungsautomation. Das E9066T ist Teil einer neuen innovativen Familie von kleinen, modularen und zuverlässigen Industriere. VISI QUICK VISI QUICK VISION SYSTEM FOR GLASS CONTAINERS Marposs is pleased to announce the launch of Visi Quick, a vision system for glass containers inspection, at Glasstec 2008 (Düsseldorf 21-25/10/2008). Visi Quick is a flexible measuring machine, using a high-resolution smart camera, suitable for dimensional and geometric inspection of a large variety of glass containers having different size, shape and colour. The container to be measured is back-illuminated by a diffusive light source. Its image is taken by a telecentric lens and focused on the high-resolution CCD matrix sensor of the camera. Visi Quick is available either in stand-alone configuration, with manual or automatic loading/unloading, or to be integrated in the production line for sample checking. It can measure all the standard characteristics of glass containers, such as: height external body dimensions (diameter, roundness, taper) lean/bent neck tilt straightness of the labelling area finish parameters on different finish types (cork, crown cork, screw finish) corkage inside diameter, roundness and taper weight (optional). Other parameters can be evaluated upon request. A Microsoft Windows based software, installed in the E9066T PC, provides a simple and intuitive user interface. Industrial Qualified personnel will be glad to welcome you in Marposs booth (hall 12, booth A05) for a live show. MICRO-EPSILON Messtechnik GmbH & Co. KG Address Königbacher Str Ortenburg Germany Telephone Fax Internet Address Booth Hall 13 F Measurement and control of glass thickness Measurement and control of glass temperature Surface, contour and imperfection measurement and control Measurement and control of glass temperature thermometer LS Serie 2008 Messe Düsseldorf 2177

60 MyCatalog MyCatalog Das Infrarotthermometer thermometer LS ermöglicht die professionelle berührungslose Temperaturmessung an bis zu 1mm kleinen Objekten im Bereich von -35 bis 900 C. Das Infrarotthermometer thermometer LS ermöglicht die professionelle Typische Anwendung findet es in der vorbeugenden Instandhaltung, Qualitätssicherung, in Forschung, Entwicklung und beim Elektronikdesign. Das Infrarotthermometer thermometer LS ermöglicht die professionelle Das patentierte Laser-Fadenkreuz markiert in jeder Messentfernung exakt die Messfeldgröße. Die Alternative zu IR-Kameras: Fokussierbar auf 1 mm Messfleck Laserkreuz markiert wirkliche Messfleckgröße Messbereich -35 C bis +900 C 75:1 Optik Thermoelementfühler thermometer MS Serie Die thermometer MS Serie verbindet modernste Technologie mit einem attraktiven Preis. Der weite Temperaturbereich von -32 bis 760 C, der Ziellaser und eine optische Auflösung von 20:1 ermöglichen präzise berührungslose Temperaturmessungen von Oberflächen in einer Vielzahl von Anwendungen: elektrische und mechanische Instandhaltung, Heizung, Klima, Lüftung, Kfz-Diagnose, Elektrik, Heimwerkerbereich. Das thermometer MiniSightPlus bietet zusätzlich die Möglichkeit, Alarmfunktionen einzustellen sowie den Emissionsgrad auch nachträglich der Messaufgabe anzupassen. Besondere Eigenschaften: schnelles Abtasten innerhalb von 0,3 Sekunden Ziellaser zum genauen Anvisieren des Messobjektes sehr leichtes (150 g) und anwenderfreundliches Industriedesign Mipec AG Address Rishaldenweg Rothrist Switzerland Telephone Fax Internet Address Booth Hall 15 C Optimization of glass cutting and glass production yield CNC control for handling machines Controls for glass inspection machines Inspection, protocolling and diagnostic systems Optimization systems for cutting and yield 06 Contracting, consulting, engineering CNC control for handling machines SIMOTION Steuerungssysteme Wenn es um präzise gesteuerte Bewegungen geht, setzen wir SIMOTION Steuerungssysteme als leistungsfähige Antriebsplattform ein. Dieses System erlaubt eine effiziente Entwicklung und schnelle Umsetzung der Anforderungen. Beispiel: Schneidsteuerung für Floatglas-Anlagen 2008 Messe Düsseldorf 2178

61 MyCatalog MyCatalog MSC INSPECTION WORLDWIDE Address ZA des Plattes, 1 Chemin des Plattes Vourles France Telephone Fax Internet Address Booth Hall 13 C89 (freaks, leaners, etc.) before the annealing lehr BENEFITS On the short-term: Gives immediate access to information (by cavity) Reject critical defects On the long-term: Give the main trends of the process and allows objective analysis of the process parameters Reduce the rate of defects by anticipated detection Reduce the interventions on the line Laboratory equipment Measurement and control of glass thickness Measurement and control of glass temperature Measurement and control of glass tension Surface, contour and imperfection measurement and control Controls for glass inspection machines Inspection, protocolling and diagnostic systems Process control systems Process control systems IS machine I-CARE is composed of: One (or two) high resolution IR camera(s) (equipped with a cooling system) to be installed along the conveyor just after the IS machine (30 cm wide) A control unit connected to the cameras by optic fiber ; Its screen allows direct access to the information A remote supervision unit connected to Ethernet. Automatically synchronized to the IS machine, I-CARE analyzing the infrared radiation of the articles to: Evaluate the positioning of the articles on the conveyor (wrong spacing, stuck/down articles) Detect critical defects (birdswings, big blisters, etc.) and rejects bad ware 2008 Messe Düsseldorf 2179

62 MyCatalog MyCatalog COMPANY NEWS MSC, SGCC & Visiglas: 2008 exhibition preview MSC, SGCC, and Visiglas are from now on together in the Tiama group, and offer you the best quality machines in the glass industry thanks to: R&D: second to none Red Carpet Service worldwide; 24/7 Worldwide presence, more people closer to glassmakers. To stay always ahead, MSC, SGCC & Visiglas provide the best range of products for hollow glass inspection and cosmetic & pharmaceutical glass. They are the only one to provide a global solution for glassmakers by equipping the whole production line: the Hot-End & the Cold-End. Visit our booth 13C89 at GLASSTEC to discover our latest developments: Hot-end inspection solutions: Laser Hot End engraving system for containers traceability during all the production process and during the whole glass container life thanks to a unique code. I-Care: hot end device for production trends and stability analysis, critical defect recognition and process optimization (consistent operator-oriented tools). Cold-end inspection solutions: ICAM & MCAL: Powerful vision machines for sidewall, dimensional and stress inspection. Multi: Base vision and base stress inspection with enhanced functionalities, an extended finish inspection including wide mouth jars, and dot digital codes mould number reader by camera. Combi: An equipment that combine sidewall and base vision detections. Quick, Check +: Servo motorized multi inspection (Optical plug gauging, leakage and tightness, Non Contact wall thickness, Non Contact ovalization, etc ) on the widest range of containers. Atlas: Check Detection by Cameras Cosmetic & Pharmaceutical solutions: Astra: detection device for cosmetic defects in the sidewalls and dimensional control for perfume, nail polish bottles and drinking glasses. Argos: ON LINE Check detection and inspection on the widest range of containers. Supervising system: IAFIS system : plant supervising system for real time date Laboratory devices: Laboratory devices such as Seedlab (device counting and categorizing seeds to measure the glass refining mark), Profiler designed to register the internal corkage profile of wine and champagne bottles, and of all bottles having a long neck. With their combine know how MSC & SGCC and Visiglas offer a wide range of innovative and high-performance inspection devices. Come and visit our stand N 13C89. Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page 2008 Messe Düsseldorf 2180

63 MyCatalog MyCatalog Nedo GmbH & Co. KG Nirvana Technologies (P) Ltd. Address Hochgerichtstr Dornstetten Germany Telephone Fax Internet Address Booth Hall 12 A69 Address 492, Sahakar Nagar, Part 2, Chembur Mumbai India Telephone Fax Internet Address Booth Hall 15 B Measuring devices to be used on site Measuring devices to be used on site Laser distance measuring device DISTO A3 Outstanding compactness and optimum functionality are the main characteristics of the new DISTO"! A3. Caracteristics: Measuring range: 0.16 ft up to 325 ft (0.05 m to 100 m) Accuracy: ± 0.06 in. (± 1.5 mm) Area, volume measurement Minimum/maximum measuring Continuous measuring Addition, subtraction Illuminated display Built-in bubble Optimization of glass cutting and glass production yield Software MRP/CAD/CIM systems Optimization systems for cutting and yield MRP/CAD/CIM systems PLUS Replicam - Digitizing Software to Replicate Templates PLUS-Replicam helps you generate accurate drawings of complicated shapes quickly from digital images. Start with a photograph of your template, calibrate the image in PLUS-Replicam, and trace the outline of the shape automatically or manually and save it as a DXF file. This file can be integrated into your workflow for downstream activities like order entry, production planning, optimization etc. Optionally, generate NC codes for the shape. Link zu weiterer Information Optimization systems for cutting and yield PLUS 1D - Bar Nesting Software 2008 Messe Düsseldorf 2181

64 MyCatalog MyCatalog PLUS 1D is a Bar Nesting (multing) optimization software, which helps reduce the waste in cutting any 1D (lineal) material like pipe, spacer bar, sections, flange, channel, extrusions etc. The software finds application in Steel Fabrication, Structural Steel Estimation, Aluminium Architectural systems, Facades, Windows. Link zu weiterer Information COMPANY NEWS Nirvana Technologies will unveil PLUS 2D - Glass optimization software verison 8 at Glasstec 2008, Dusseldorf, Germany, the world s largest glass exhibition and conference. PLUS 2D : An efficient glass optimizer with a well designed, intuitive user interface that generates optimum cutting patterns and has CNC links to many cutting tables. The new release includes enhancements resulting in improved utilization and speed apart from a host of new features like pattern amendment, triangle nesting module, pallet optimization etc. Nirvana's One-Stop solution for all glass processors and fabricators include a suite of integrated products: PLUS Label Maker - Bar-coded label printing software: To print bar-coded labels using an ordinary printer. PLUS Replicam - Digitizing software to replicate templates: Convert a digital image of a template to a DXF file PLUS Glass Manager - Order Processing and Inventory Software: Estimate, prepare quote, manage customers, orders and inventory. To know more about our products and to discuss how your business can benefit from our solutions, we invite you and your colleagues to visit us at our stand at Hall 15, B-43 between 21 and 25 October Visit our website for more information: Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors 2008 Messe Düsseldorf 2182

65 MyCatalog MyCatalog Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Nirvana Technologies is proud to release PLUS-Replicam - Digitizing Software to Replicate Templates, version 1.xx. PLUS-Replicam is a digitizing software that helps you generate accurate drawings of complicated shapes quickly from digital images. Start with a photograph of your template, calibrate the image in PLUS-Replicam, and trace the outline of the shape automatically or manually and save it as a DXF file. This file can be integrated into your workflow for downstream activities like order entry, production planning, optimization etc. Optionally, generate NC codes for the shape. Benefits: 1. Ensures accuracy while saving time and effort. 2. Highly flexible no limits on the size of the template. 3. No need to invest in an expensive digitizer or digitizing table 4. Save logistic cost and hassles no need to transport and store templates. 5. Template drawings can be archived and retrieved for later use. 6. Fast transition from data to cutting table. Also, integrated with PLUS 2D. Features: 1. Trace shape outline automatically or manually and convert into a smooth tangential contour suitable for CNC machines. 2. Add break out cuts and set attributes like speed, pressure, and other CNC attributes for the cut. 3. Generate the NC Code, for many different CNC cutting machines, for the traced shape 4. Digitize complicated shapes, holes and cutouts, drawing them on separate layers for drilling, grinding etc. 5. Use Inquiry tools to verify dimensions in addition to drafting features like fillet, chamfer, edit, scale, rotate, mirror and snaps. 6. Work in your preferred units - millimeter, inches - metric or english, etc. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; 2008 Messe Düsseldorf 2183

66 MyCatalog MyCatalog var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Die intelligenten Kameras der OBV-Scan-Systeme erkennen zuverlässig: Beschichtungsfehler Kratzer Verschmutzungen Einschlüsse OBV-Scan Systeme lassen sich dabei so konfigurieren, dass nur Fehler visualisiert werden, die auch praxisrelevant sind. Überzeugen Sie sich am besten selber von der Intelligenz unserer Systeme. Olivotto Glass Technologies S.p.A. OB Vision GbR Address Linienstr Berlin Germany Telephone Fax Internet Address Booth Hall 11 F Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control OBV-Scan Systeme Fehler frühzeitig erkennen und beheben. Das optimiert den Produktionsprozess und spart Kosten. Genau das können Sie durch den Einsatz von OBV-Scan Systemen für die Isolierglas-Produktion erreichen. Address V.le Gandhi, Avigliana / TO Italy Telephone Fax Internet Address Booth Hall 14 E Gob feeder Suck feeder Bar feeder Shear blades Blowing machines Press machines Press-blow-machines Spinning machines Injector machines Ampoule and laboratory glass machines Flash welding and fire polishing machines 2008 Messe Düsseldorf 2184

67 MyCatalog MyCatalog Equipment for glass tube production Transport and handling systems Sawing machines and rim polishing machines Measurement and control of glass thickness Process control systems 06 Contracting, consulting, engineering Process control systems Automation & IT Solutions The use of powerful electronics and efficient servo-motors is world-wide increasing in order to reduce energy consumption and to facilitate the automatic machines set-up and operations. Of course Olivotto Glass Technologies is also investing in this sectors, by replacing pneumatic mechanisms with more controllable and friendly operable servo-mechanism. The full electric press (GDP) is available in almost all the table sizes. Electric pressing system (EPS) is also ready for new applications and latest technology PLC are used on all the Olivotto Glass Technologies machines. This new generation of control systems, which control loops and operators interface, has been developed by our software engineers, allows a very quick, reliable and precise control of all the machines operation and provide an user friendly and customisable operator interface. Features as Tele-Assistance Service or Help on Line make the life easier also for unskilled operators, allowing a quick training and faster troubleshooting. Furthermore, our control systems allow to have problem-free communication on all the Olivotto Glass Technologies integrated production lines avoiding typical troubles coming from different control systems supplied by different companies. OPOS, Optische On-line Sensoren Address Hertzstr. 164b Karlsruhe Germany Telephone Fax Internet Address Booth Hall 13 E Measurement and control of glass position detection Measurement and control of glass thickness Surface, contour and imperfection measurement and control Measurement and control of glass position detection Retroscanner The Retroscanner is a a telecentric laser scanner for all purposes with limited space behind the measurement object. The usual telecentric laser scanners comprise an emitter and a receiver, both located on opposite sides of the measurement object. Differing from that, the retro scanner comprises only a combined emitter / receiver unit (transceiver) and a small retroreflective stripe (height ~ 3 mm) "behind" the measurement object. This concept provides three main advantages: less effort in the adjustment of the system, minimal space requirement and of course less effort in the installation at a production plant. Measurement Objects: - all objects, shadowing (partially) an incoming laser beam, - outer contours up to 120 mm, - minimal distance between contour edges 2 mm Measurements - object edges (shadow edges) or values directly related to object edges (object diameter, slit width...) 2008 Messe Düsseldorf 2185

68 MyCatalog MyCatalog - resolution 1 µm - on demand: development of an on line bow sensor Special features: - high robustness against object movement - minimal effort in adjustments / alignment Measurement and control of glass thickness Glass-Scanner I-Mike I-Mike provides contact free measurements of the relevant parameters of transparent objects (tubes, rods, bottles ). Within each measurement interval the transmitter scans the measurement field by moving a laser beam exactly parallel to the optical axis. Located behind the measurement object, the receiver is facing the transmitter. He detects the incoming beams aside and through the object. The diameter and position of the object is calculated by evaluation of the object s shadow. Wall thickness or inner diameter of transparent tubes is measured by evaluation of the beam paths through the object. In the case of glass rods, the refraction index and two diameters are measurable (parallel and perpendicular to the optical axis). Measurements: - diameter - wall thickness / inner diameter - siding and ovality - bow - birefringence of tubes - refraction index of rods Special Features - resolution 1 µm - measurement field up to 150 mm - highly robust against object movements in the measurement field - easy alignment and calibration - on demand: double head system for tubes up to 350 mm - on demand: development of conicity measurement of tubes and rods Optima S.r.l. Address Via Vespucci, San Giovanni in Persiceto / BO Italy Telephone Fax Internet Address Booth Hall 16 E Optimization of glass cutting and glass production yield Cutting technology for float glass Software MRP/CAD/CIM systems Optimization systems for cutting and yield Process control systems Other control systems Process control systems Electronic digital drawing machine...for measuring irregular profiles on paper or of a template. Direct link to a computerized station via RS232C cable for the automatic generation of the drawing in the CAD-software. Available sizes: cm 100 x 170, cm 120 x 220, on demand cm 160 x 370 (max., with double pedestal). Drawing data entry and transmission to the image processing software - The template is placed on the table surface and properly fixed. When the drawing machine is ready for the data transmission to the linked Personal Computer a series of dimensions are sent by moving along the profile of the template. Dimensions can be sent one by one or continuously. When the drawing machine is linked to the Opty-Way CAD system the continuous measurement is possible as it is the software that eliminates points unnecessary to the cutting profile and optimizes the profile to be realized Messe Düsseldorf 2186

69 MyCatalog MyCatalog Processing of data received by the drawing machine and generation of the profile to be machined - Through the RS 232 C cable link the Opty-Way CAD drawing system receives all the mathematical information for the realization of the geometrical shape placed on the drawing machine. At this stage the user can make all the necessary changes. After saving the file the system is ready to transfer the information to the cutting program without further passages. Generation of data for the automatic cutting system - Once waste has been optimized, cutting can be performed by the cutting table via diskette or serial link. BMF Boden-Mündung-Formennummerprüfung Inspektion von Boden und Mündung an Behälterglas, Lesen der Formennummer auch in Klarschrift Optische Prüfsysteme Dr. Günther Address Dänkritzer Str Zwickau Germany Telephone Fax Internet Address Booth Hall 13 A88 KSWI KSWI Kombiniertes Seitenwand-Inspektionsystem Prüfen der Seitenwand von Behälterglas auf Fehler, Messen verschiedener Dimensionen am Behälter MIS MIS Mündungsinspektion Separates Gerät zum Prüfen der Mündung an Behälterglas Surface, contour and imperfection measurement and control BMF Surface, contour and imperfection measurement and control ODOL 2008 Messe Düsseldorf 2187

70 MyCatalog MyCatalog ODOL Opalglas-Prüfgerät Spezialmaschine zum Prüfen von Opalglas-Behältern OSAI S.p.A. tuning, backup and restoration of Firmware and parameters, and, of course, excellent dynamics with accurate and flexible control of Servo Loops. The WinNBI Software Package, a new Software Environment for configuring the Human Interface. WinNBI is also used for application development and tuning, in the WindowsTm environment, allowing easy configuration of End User Interface, with an approach oriented to easy Multi-Language management. The result is a very competitive price/performance ratio over the whole spectrum of applications. Address Via Torino, Barone C.se / TO Italy Telephone Fax Internet Address Booth Hall 15 A CNC control for handling machines CNC control for handling machines New architecture from OSAI The latest addition to the OSAI CNC range, 10/510 Light Numerical Control, is characterized by two main features, marking further significant steps in Enhanced Performance and Ease of Use: OS-Wire a high-speed digital Bus with a unique link managing both Digital Axes and I/O Devices, all available in OSAI Package. This solution is based on digital, high-speed serial communication, operating at 90 Mbit/s, and all devices (with up to 64 nodes) are interfaced with the master CNC as memory locations. This makes the protocol very efficient which permits fine and accurate interpolation, even on very complex multi-axis applications (up to 32 axes in total) and the most flexible application. OS3 Digital Drives profit from all the considerable advantages of a digital link: automatic detection of components, digital on-line parameterization and 2008 Messe Düsseldorf 2188

71 MyCatalog MyCatalog COMPANY NEWS After 50 years of activity in the field of numerical control, now applied in particular to machinery for the processing of glass and marble, OSAI was, in July 2007, acquired by Prima Electronics, a company part of the Prima Industrie group of companies. This integration in a large group enables OSAI to further increase its worldwide penetration and facilitate the expansion of its products applications in the Global Challenge. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Precitec Optronik GmbH Address Raiffeisenstr. 5d Rodgau Germany Telephone Fax Internet Address Booth Hall 13 B Measurement and control of glass thickness Surface, contour and imperfection measurement and control Measurement and control of glass thickness CHRocodile M10: Non-contact measurement at 10 points The CHRocodile M10 optical sensor represents a new approach to non-contact, high-precision thickness measurement of transparent and non-transparent materials. The system measures values for up to 10 measuring points simultaneously during the production of glass, film, metal or paper for example. The CHRocodile M10 thus offers significant rationalization potential in both inline and offline operation for quick and reliable analysis of the thickness and topography of materials. Whereas in the past several sensors had to be used to monitor 10 measuring points simultaneously, all that is needed today is one CHRocodile M10 with 10 independent channels to measure values synchronously. The simultaneous nature of the measurement eliminates the need for synchronization between sensors measuring product belt material thickness of non transparent materials like metal or paper. Die Gleichzeitigkeit der Messung erspart die Synchronisierung mehrerer Sensoren bei der Dickenmessung nicht transparenter Materialien wie z.b. Produktbänder aus Metall oder Papier Messe Düsseldorf 2189

72 MyCatalog MyCatalog An optical fibre transmits the halogen light to the extremely compact measuring heads that are designed as purely passive lenses without electronic or moving parts. That facilitates the integration of the system into production and inspection lines, e.g. in the glass industry, and allows measurements to be carried out even under difficult ambient conditions, such as on hot flat glass. To ensure even the slightest flaws are detected at high belt speeds, the new CHRocodile M10 boasts a high measuring rate of up to 14,000 measurements per second. With 10 measurement points, for example, the single module thus measures the thickness and condition of the material 1400 times per second. As the spot size is only a few hundredths of a millimetre in diameter, even minute flaws do not go undetected during both inline and offline operation. The new system is configured via an integral PC. The outgoing measurement data is integrated reliably into the process of the production line via an Ethernet link. In summary the new CHRocodile M10 sensor offers significant advantages for production: - Simultaneous non-contact measurement of the material thickness and condition at up to 10 measurement points with just one sensor - Designed for inline and offline operation - High measurement rate of 14,000 measurements per second - Easy integration into the production process Link zu weiterer Information CHRocodile M4: Non-contact measurement of thickness & shape The thickness measurement system CHRocodile M4 from Precitec Optronik now provides a particularly economical solution for inline inspections during the production of bottles and container glass. The system from the successful CHRocodile range of sensors directly records the thickness and roundness of the glass body without contact and with high precision during the ongoing production process. This means that it is not necessary to take and measure samples during the production process, so as to readjust the system if necessary following the production of a large number of rejects. So that very minor flaws can still be detected even at fast belt speeds of (for example) 4m/s, CHRocodile M4 works with a high measuring rate of 4000 measurements per second. It does not matter whether transparent glass bottles or coloured glass vessels are passing along the production line. Link zu weiterer Information Flat probes for non-contact glass thickness measurement Precitec Optronik GmbH offers now additionally flat optical probes for non-contact wall-thickness measurement of container glass. Due to their flat construction a container glass manufacturer can now measure more thickness profiles per bottle height. Link zu weiterer Information Surface, contour and imperfection measurement and control CHRocodile M10: Non-contact measurement at 10 points The CHRocodile M10 optical sensor represents a new approach to non-contact, high-precision thickness measurement of transparent and non-transparent materials. The system measures values for up to 10 measuring points simultaneously during the production of glass, film, metal or paper for example. The CHRocodile M10 thus offers significant rationalization potential in both inline and offline operation for quick and reliable analysis of the thickness and topography of materials. Whereas in the past several sensors had to be used to monitor 10 measuring points simultaneously, all that is needed today is one CHRocodile M10 with 10 independent channels to measure values synchronously. The simultaneous nature of the measurement eliminates the need for synchronization between sensors measuring product belt material thickness of non transparent materials like metal or paper. Die Gleichzeitigkeit der Messung erspart die Synchronisierung mehrerer Sensoren bei der Dickenmessung nicht transparenter Materialien wie z.b. Produktbänder aus Metall oder Papier. An optical fibre transmits the halogen light to the extremely compact measuring heads that are designed as purely passive lenses without electronic or moving parts. That facilitates the integration of the system into production and inspection lines, e.g. in the glass industry, and allows measurements to be carried out even under difficult ambient conditions, such as on hot flat glass. To ensure even the slightest flaws are detected at high belt speeds, the new CHRocodile M10 boasts a high measuring rate of up to 14,000 measurements per second. With 10 measurement points, for example, the single module thus measures the thickness and condition of the material 2008 Messe Düsseldorf 2190

73 MyCatalog MyCatalog 1400 times per second. As the spot size is only a few hundredths of a millimetre in diameter, even minute flaws do not go undetected during both inline and offline operation. The new system is configured via an integral PC. The outgoing measurement data is integrated reliably into the process of the production line via an Ethernet link. In summary the new CHRocodile M10 sensor offers significant advantages for production: - Simultaneous non-contact measurement of the material thickness and condition at up to 10 measurement points with just one sensor - Designed for inline and offline operation - High measurement rate of 14,000 measurements per second - Easy integration into the production process Link zu weiterer Information CHRocodile M4: Non-contact measurement of thickness & shape The thickness measurement system CHRocodile M4 from Precitec Optronik now provides a particularly economical solution for inline inspections during the production of bottles and container glass. The system from the successful CHRocodile range of sensors directly records the thickness and roundness of the glass body without contact and with high precision during the ongoing production process. This means that it is not necessary to take and measure samples during the production process, so as to readjust the system if necessary following the production of a large number of rejects. So that very minor flaws can still be detected even at fast belt speeds of (for example) 4m/s, CHRocodile M4 works with a high measuring rate of 4000 measurements per second. It does not matter whether transparent glass bottles or coloured glass vessels are passing along the production line. Link zu weiterer Information Nemesis topographies measured regardless of the nature of the surface (smooth and polished, rough, matte, transparent)dimensional monitoring of ultra-small components and microstructuresthickness layer measurement of transparent objectsdetermination of roughness, waviness, load curvesmeasuring of optical components Link zu weiterer Information Prodim International B.V. Address Lage Dijk BZ Helmond Netherlands Telephone Fax Internet Address Booth Hall 12 C Measuring devices to be used on site Measuring devices to be used on site ProCutter Plotter For those companies that use a traditional cutting machine, or think it takes to much time to adjust their CNC machine, it is extremely useful to have a ProCutter Plotter. The ProCutter can be easily connected to the Proliner measuring device through the Proliner Host Software. This way it is possible to directly make a plot of your measurements, You will then have a physical template out of your digital template. With this template you can start production on your cutting machine, or you can use the template as a quality check. The width of the media is 122 cm, and Prodim can deliver special media for the Proliner. The ProCutter plotter features a large, easy-to-use control 2008 Messe Düsseldorf 2191

74 MyCatalog MyCatalog panel that allows you to quickly and easily change setting such as speed, pressure and plot mode. You can save settings in 4 user-defined configurations for even faster switching between your favorite cutter settings. With the exclusive control software, you can adjust settings, and defined your saved setting right from your Windows PC. The ProCutter plotter offers tracking accuracy and it combines a durable drag-knife cutting head with advanced internal programming to deliver quality and versatility. The unique drag-knife cutting technology eliminates flaws due to blade-wear. Adjustable media support rollers and roll-end flanges make it easy to load your vinyl straight every time. The ProCutter is so accurate that we guarantee repeatable plots up to 8 metres (26 ft.) in length. Link zu weiterer Information Positioning or calibration is not needed, so you can immediately start measuring. When used properly, it is possible to measure with an accuracy of 0,3mm on 2m, or 0,6mm on 5m. Measurements can be seen in a digital drawing immediately. The results are translated in a digital CAD file in DXF format. This means that you can prepare the final drawings on site, and send the results to the factory for immediate production. Delivery times can be shortened because of faster measuring, and it is no longer needed to make traditional templates. You can imagine what a competitive advantage you will get! Measurements up to 10 meters can be made at one time and larger measurements can be made by combining drawings in a simple leap frog process. Link zu weiterer Information Proliner 3D Measuring Device The Proliner 3D Measuring Device has been available for some time now. More and more companies realize how this device can help them to improve the productivity and efficiency. The ultramodern Proliner takes a most of the work out of difficult measurements. This mobile measuring device records the measuring points very precisely and then saves the collected information digitally. Since the Proliner can be easily connected to the common CAD-systems, it is possible to get accurate drawings in just a couple of minutes. The Proliner is capable of making precise measurements of straight, curved, or very complex shapes. It doesn t matter whether the object is in a horizontal, vertical or slanting position. It is also possible to measure a combination of these positions at once. In just a couple of seconds, the special pointer marks the relevant points in order to register the outlines of the object. The Proliner is extremely useful for measuring counter tops, as you can measure the countertop and back splash, including electricity outlets at once. The Proliner can also be used for quality control. If a template or a final product in 2-or 3D has been made, it is very easy to scan the object with the Proliner and check if everything fits. The Proliner offers the following advantages: The Proliner is very practical to use: it s compact, only 10 Kg, and therefore easy to take. The device works with a rechargeable battery, so you can measure about 3 hours continuously. The Proliner is solidly constructed to withstand actual in the field working conditions. To use the Proliner is a piece of cake: only a short training is needed for competent usage. With the Proliner it is possible to measure two- or three dimensional. Proliner 8-Series Measuring Device As a result of the success of the first Proliner, Prodim International will release a new version of the 3D-measuring device, the Proliner 8-Series at the Marmomacc in Verona. This new model is very compact and lightweight, has a lot of storage space, a large 8.4 touch screen, more extensive user-friendly software options and more possibilities for expanded usage. The machine s weight is 8,5 kilos, and it is designed to offer optimal transportability. This model is extremely useful for people who need to travel and measure on-site. The measuring head can be folded into the machine for optimal protection during travel. The compact design allows the user to conveniently transport the machine anywhere, e.g. it can be easily stored in overhead compartments on planes. The Proliner 8-Series works with the same dependable principle as the first Proliner model, which registers the X-Y-Z co-ordinates of the desired shape, and translates these directly into a digital CAD file in DXF format. The software platform of the Proliner 8-Series is very extensive and offers a variety of possibilities. It has some CAD functionalities integrated into the machine, like trimming and fillet, which enables the user to prepare for production, while still on-site. A socket connection, as well as the possibility to use rechargeable batteries provides optimal flexibility. The machine has a USB port, so results can be downloaded onto a laptop or USB stick, so the results can immediately be sent per to the factory. In short, the Proliner 8-Series is designed for companies which need a measuring solution, that offers more usage possibilities and software options. Link zu weiterer Information 2008 Messe Düsseldorf 2192

75 MyCatalog MyCatalog R.O. Srl Address Corso San Maurizio, Torino Italy Telephone Fax Internet Address Booth Hall 12 D Software MRP/CAD/CIM systems Optimization systems for cutting and yield MRP/CAD/CIM systems Perfect CAD Perfect CAD is a CAD software specifically designed for the glass sector, with all the functions that are fundamental for glass shapes. Its main feature is its user-friendliness, despite its completeness and usefulness. The training course lasts one day only. Perfect DXF is a limitation of Perfect CAD to DXF format import and subsequent changes to the layout, such as grinding offset, edging, edge advance, shape initial node definition, cutting direction, tool to be used (if different from the default one, e.g. for open cut) for some entities (curves or segments). One Perfect CAD option is Perfect Spline that allows acquiring points from a carton prototype of the shape by using a laser device, a digital drafting machine or a drawing tablet and connecting points with an optimal curve, always tangent and with the minimum number of entities (arcs or segments) Optimization systems for cutting and yield Perfect Cut Perfect Cut optimizer main characteristics are the following: Minimum scrap. Easy sectioning. Optimized cutting lines to obtain reusable tails and sectioning. Optimized cutting path, with path display, also available "step by step". Interface towards the most commonly used NC, both by serial port and floppy disk (COPMES, ITALMEC, ELETTROFLEX, IANUA, TRE STELLE, VALMAC, TECNOMETAL, BAVELLONI, BYSTRONIC, BOTTERO, FOREL, INTERMAC, GFPM, CSM). Any printer that can be configured in WINDOWS environment can be used. Double-glazing management, with automatic division in sub-groups according to the number of families used, with sticker management. Possibility of entering cutting orders even with different material families, with automatic decomposition into sub-problems. Complete and powerful printing. Label printing that can be personalized according to the customer's needs. Raytek GmbH Address Blankenburger Str Berlin Germany Telephone Fax Internet Address Booth Hall 12 E Measurement and control of glass temperature Surface, contour and imperfection measurement and control Measurement and control of glass temperature GS Messe Düsseldorf 2193

76 MyCatalog MyCatalog The GS100 System is an automated temperature measurement system for glass bending, forming, annealing, and tempering processes. The MP50 measures a line of 256 points using a rotating mirror that scans a 90º field-of-view up to 48 times per second. The scanning of a glass part is initiated by the measured temperature, or an external "trigger" signal. As each heated glass part traverses the field-of-view, a two-dimensional thermal image or "thermogram" is formed. "thermogram" is formed. The GS150 installs easily, just like a camera, and views the glass part from above, whenever it has a clear path. Connecting the pre-wired cables (included) to a PC and entering installation dimensions in the GS150 Software completes the installation process. The MP50 installs easily, just like a camera, and views the glass part from above... whenever it has a clear path. Connecting the pre-wired cables (included) to a PC and entering installation dimensions in the GS100 Software completes the installation process. Benefits: - Improve profitability and product quality - Reduce set-up time - Detect defects quickly - Automate quality monitoring for ISO Reduce scrap Features: - View complete thermal images and temperature profiles - Define product-specific configurations and data files - Customize and display zones overlayed on a thermal image - Automatically analyze zone temperatures - Fail-safe alarm logging - Optional analog or digital outputs - Languages supported: English, German, French, Finnish, and Italian GS150 Glass System Surface, contour and imperfection measurement and control The GS150 Thermal Imaging System is an automated temperature measurement system for glass bending, forming, annealing, and tempering processes. The GS150 measures a line of up to 512 points using a rotating mirror that scans a 90º field-of-view up to 150 times per second. The scanning of a glass part is initiated by the measured temperature, or an external "trigger" signal. As each heated glass part traverses the field-of-view, a two-dimensional thermal image or 2008 Messe Düsseldorf 2194

77 MyCatalog MyCatalog COMPANY NEWS RAYTEK, Hersteller von Infrarot-Pyrometern seit 1964, präsentiert eine neue Version seines Infrarot-Zeilenscanners zur berührungslosen Temperaturmessung an Bandprozessen. Mit innovativen Hardware- und Software-Funktionen gewährleistet der neue RAYTEK MP150 noch mehr Flexibilität und Präzision bei der Prozessüberwachung. Mit einer sehr hohen Abtastgeschwindigkeit von 150 Hz kann der neue Zeilenscanner bis zu 150 Temperaturprofilen pro Sekunde erfassen und eignet sich somit zur Temperaturüberwachung an schnellen Bandprozessen. Die neue Version vom MP150 bietet zudem eine erhöhte optische Auflösung von bis zu 150:1 und kann bis zu 1024 Punkte pro Zeile erfassen. Dies ermöglicht noch weitaus genauere Messdaten und die Erfassung von kleinsten Temperaturabweichungen. Zum genaueren Anvisieren verfügt das Messgerät über einen roten Linienlaser, der im IP65 Schutzgehäuse des Scanners eingebaut ist. Der neue MP150 wird mit der ebenfalls weiterentwickelten DataTemp DP Software mitgeliefert. Die Software dient zur Installation und Konfiguration des Scanners. Sie ermöglicht es zudem, Temperaturprofile und Thermogramme zu erzeugen, darzustellen und zur späteren Analyse zu speichern. Dadurch erhält der Anwender ein klares Bild vom Fertigungsprozess und kann kritische Einstellungen der Temperaturverteilung überwachen und steuern. Alle Daten können jetzt im.tiff und.jpeg Format gespeichert werden. Dies erleichtert das Austauschen der Informationen mit Kollegen und Kunden im Rahmen der Prozessdokumentation. Außerdem tragen die neuen Funktionen Movie Clip und Differenzbild zur verbesserten Prozessüberwachung bei. Der neue Scanner von RAYTEK verfügt über eine TCPI/IP Ethernet Schnittstelle und kann von jedem Computer in einem Ethernet Netzwerk angesprochen werden. Ebenfalls neu ist das Glasfaser-Kit zur direkten Anbindung des Scanners in vorhandene Glasfasernetzwerke oder zum PC. Diese neue Möglichkeit ist besonders von Vorteil, wenn das Übertragen der Daten z. B. durch elektromagnetische Störfelder gestört werden kann. Der neue Linescanner von Raytek wurde für die kontinuierliche Temperaturmessung an bewegten Objekten in der Prozesssteuerung und bei der Qualitätsüberwachung konzipiert. Der MP150 ist mit verschiedenen Messwellenlängen für Anwendungen in der Glas-, Kunststoff-, Stahl- und Eisen, Papier- und Textilindustrie verfügbar. Zusätzlich sind Paketlösungen für Zementdrehrohröfen, Kunststoff-Extrusionsbeschichtung, Kunststoff-Tiefziehen sowie Glasbiegen und Low-E Glas erhältlich. text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident-Nr.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Standauftrags-Nr.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login für Aussteller Ident-Nr.: Standauftrags-Nr.: Passwort: Fragen zum Passwort und zum OOS? Tel.:+49/ Online-Support für Besucher & Presse Login: Passwort: Passwort vergessen? Benutzerkonto einrichten Pressezugang beantragen Service Linksnach obendatenschutznutzungsbedingungenseite druckenseite empfehlen Messe Düsseldorf Mehr Informationen Suche Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( 2008 Messe Düsseldorf 2195

78 MyCatalog MyCatalog The new Raytek MP150 High-Speed Infrared Linescanner launched in January 2008 provides the fastest and most complete non-contact temperature linescanning solution on the market today. The MP150 features the latest electronics, optics, communications and mirror mechanisms. This technology facilitates a scan speed up to 150Hz, allowing the MP150 to gather complete data from even the fastest manufacturing processes. The product has now been further enhanced with expanded data collection capability. The MP150 can now measure up to 1024 data points per scan, up from the previous 512, to provide the user to see even smaller temperature anomalies. Also new is a fiber-optic communication system that permits connection to existing fiber networks or directly to a PC. Fiber-optic infrastructure avoids potential interference from strong EMI fields generated by heavy equipment as well as protecting the instrumentation from sudden power surges generated by lightning strikes. DataTemp DP software was enhanced to take advantage of the increased data acquisition capabilities and extended communication properties of the MP150. The software now provides some exciting new features. For instance, individual images can now be saved in either.tiff or jpeg formats allowing the user to easily share these images with other applications and/or colleagues who do not have the Raytek software loaded on their computers. Data streams can be saved and played as a movie clip. Now Raytek customers can share process information with their clients, vendors, and so on, greatly enhancing the ability to communicate process problems, quality issues and other information in an open format. Another unique feature of the MP150 is the on-board Ethernet TCPI/IP communication capability. During installation, the user connects directly to the linescanner and, using existing industrial Ethernet infrastructure, the linescanner can be accessed from any computer on the network. This innovation reduces the total installed cost, eliminating wiring runs, conduit, etc. To speed-up alignment, each unit has an internal line laser which indicates the exact line-of-sight of the linescanner. This laser, fully protected by the linescanner housing, projects a clearly visible laser line on the target even while the linescanner is collecting data at full speed. A complete suite of software solutions has been enhanced to take advantage of the increased data acquisition capabilities and extended communication properties of the MP150. The system packages allow the user to simply and quickly configure the system to analyze thermal data to monitor and control their manufacturing processes. With thousands of units in the field in the harshest environments imaginable, the Raytek linescanner has exhibited remarkable reliability and endurance. To learn more about the Raytek MP150 infrared linescanner, visit Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login SGCC Inspection Worldwide Address 105 rue du Fosse Blanc Gennevilliers France Telephone Fax Internet Address Booth Hall 13 C Messe Düsseldorf 2196

79 MyCatalog MyCatalog Laboratory equipment Measurement and control of glass thickness Measurement and control of glass temperature Measurement and control of glass tension Surface, contour and imperfection measurement and control Controls for glass inspection machines Inspection, protocolling and diagnostic systems Process control systems Measurement and control of glass thickness All types of containers : Round and Non round Ranges of containers : height : 120 to 380 mmdiameter : 50 to 110mmring diameter : 52 mm max Measurement time : Around 60 seconds per container Precision : +/- 0,5 mm on the filling level Process control systems The ATLAS The ATLAS is latest system to control Checks by CAMERA. Conceived with 12 cameras, the ATLAS approach based on a learning process with a good container will allow to improve drastically : the performance of detectionthe job change time (20 minutes compared to 45 minutes) The NCT (Non Conctact Thickness ) system The NCT (Non Conctact Thickness ) system can be adapted on any SGCC Multi inspections machines, as well as any Carroussel machines from our competitors, such as the FPs, Checks + etc... Available from One to Four levels of measures, the NCT's principle is based on optical sensors placed 63mm away form the containers which will measure the thickness of the glass on a 1 mm spot with the following accuracy : +/- 0,02 mm for light containers+/- 0,01 mm for standard containers Thank's to such a system, you will reduced your maintenance cost (no wearing parts), reduced labor (no periodic calibration) and improve the Quality of your production Controls for glass inspection machines The VOLUMAC The VOLUMAC is an automatic machine that measures the capacity and the weight of a glass containers, on a sample basis. The major advantages of such system are : Automatic adjustments for bottle height and diameterworks in masked time or in self service modethe speed of control : between 300 to 400 conatiner per shiftautomatic correctioon for changes in the specific gravity of water as a funtion of temperaturesatisfies the requirements of Directive 75/107/CEE concerning the coordination of the member countries legislation governing bottles used as measuring containerscan be integrated in a sampling measuremnt linecan be connected to any production Management system Characteristics 2008 Messe Düsseldorf 2197

80 MyCatalog MyCatalog COMPANY NEWS MSC, SGCC & Visiglas: 2008 exhibition preview MSC, SGCC, and Visiglas are from now on together in the Tiama group, and offer you the best quality machines in the glass industry thanks to: R&D: second to none Red Carpet Service worldwide; 24/7 Worldwide presence, more people closer to glassmakers. To stay always ahead, MSC, SGCC & Visiglas provide the best range of products for hollow glass inspection and cosmetic & pharmaceutical glass. They are the only one to provide a global solution for glassmakers by equipping the whole production line: the Hot-End & the Cold-End. Visit our booth 13C89 at GLASSTEC to discover our latest developments: Hot-end inspection solutions: Laser Hot End engraving system for containers traceability during all the production process and during the whole glass container life thanks to a unique code. I-Care: hot end device for production trends and stability analysis, critical defect recognition and process optimization (consistent operator-oriented tools). Cold-end inspection solutions: ICAM & MCAL: Powerful vision machines for sidewall, dimensional and stress inspection. Multi: Base vision and base stress inspection with enhanced functionalities, an extended finish inspection including wide mouth jars, and dot digital codes mould number reader by camera. Combi: An equipment that combine sidewall and base vision detections. Quick, Check +: Servo motorized multi inspection (Optical plug gauging, leakage and tightness, Non Contact wall thickness, Non Contact ovalization, etc ) on the widest range of containers. Atlas: Check Detection by Cameras Cosmetic & Pharmaceutical solutions: Astra: detection device for cosmetic defects in the sidewalls and dimensional control for perfume, nail polish bottles and drinking glasses. Argos: ON LINE Check detection and inspection on the widest range of containers. Supervising system: IAFIS system : plant supervising system for real time date Laboratory devices: Laboratory devices such as Seedlab (device counting and categorizing seeds to measure the glass refining mark), Profiler designed to register the internal corkage profile of wine and champagne bottles, and of all bottles having a long neck. With their combine know how MSC & SGCC and Visiglas offer a wide range of innovative and high-performance inspection devices. Come and visit our stand N 13C89. Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page 2008 Messe Düsseldorf 2198

81 MyCatalog MyCatalog Siemens AG, Industry Sector Smart-Builder Software Address Siemensallee Karlsruhe Germany Telephone Fax Internet Address Booth Hall 15 D02 Address Kilburn High Road NW6 7PY London United Kingdom Telephone Fax Internet Address Booth Hall 10 A Control and automation technology MRP machine and transport adjustment CNC control for handling machines Process control systems Process control systems SIMATIC PCS 7 SIMATIC PCS 7 is more than only a DCS (Distributed Control System). Our innovative process control system SIMATIC PCS 7 combines a unique scalable architecture with high performance engineering tools and comprehensive additional functions such as Alarm Management, Process Safety or Asset Management, so that you can operate your plant more efficiently. With SIMATIC PCS 7 you can increase availability, reduce the life cycle costs of your plant and increase the efficiency of your processes. In addition, SIMATIC PCS 7 offers you a flexible option for modernizing your existing systems, even during runtime Balcony glazing Glass curtain walling Structural glazing (general) Tempered glass doors (general) Specialist construction (shower partition walls) Glass door systems Ballustrades MRP/CAD/CIM systems MRP/CAD/CIM systems Work Flow Control Software Smart-Toolbox forms part of the world leading Smart-Builder range of software. This software is the only suite of integrated products designed specifically for the frameless glass industry. Smart-Toolbox has been built specifically for glass merchants and installers to provide a sales system which is extremely flexible and can be as simple or complex as you need. You have control over the whole life-cycle of quotes, jobs, work orders, glass orders, invoicing and receipts with information at your fingertips. The functionality of our world leading design software, Smart-Shower, Smart-Shopfront, Smart-Balustrade and Smart-Railing, can be seamlessly integrated into Smart-Toolbox to provide an unbeatable suite for 2008 Messe Düsseldorf 2199

82 MyCatalog MyCatalog businesses that specialise in frameless glass. COMPANY NEWS Specialist glass software developer, Smart-Builder, has released the latest version of their award winning software suite. Amongst a raft of new features and enhancements, 3D drawings of showers, shopfronts and balustrades can now be displayed in realistic colour. Visitors to Glassex, where Smart-Builder won the Best new software product award, will have already had a sneak preview. The accurately scaled 3D drawings will even model hardware and glass in the correct colour and transparency. All European customers have been upgraded to the latest version and without exception the response has been delight. For their customers, Smart-Builder's software has become an essential tool for quickly configuring and accurately costing frameless enclosures. The ability to show realistic colour 3D drawings on quotes further enhances the software s strength as a sales tool! Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: 2008 Messe Düsseldorf 2200

83 MyCatalog MyCatalog Forgot your password? Create user account Apply for Press Login Glass software specialists Smart-Builder have announced the immediate availability of their Smart-Hosting service in the UK and Europe. The service provides a simple and convenient way to access Smart-Builder's advanced design software. UK manager Paul Needham explains, "Smart-Hosting allows our customers to use the software from anywhere with internet access. They can design and quote at work, at home, while travelling or on site. It's all about flexibility. He adds, For many customers, the ability to produce accurate 3D drawings on site can clinch a deal." Smart-Builder cite other benefits, including centrally managed updates and infrastructure that many small businesses would not otherwise have in place, such as 24 hour redundant power supplies and off-site backups. Smart-Hosting is available for all of Smart-Builder's products including the shower, storefront, railing and balustrade configurators, plus Smart-Toolbox, their specialist glass merchant sales software. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: 2008 Messe Düsseldorf 2201

84 MyCatalog MyCatalog Password: Forgot your password? Create user account Apply for Press Login Specialist software company Smart-Builder, have rewritten their website from scratch. With their toughened glass configuration software under constant enhancement and refinement it is essential for the company to keep their website up to date. Significantly, as part of the change, the company has taken full control of the design, maintenance and hosting of the website themselves. This allows them more frequent updates and the potential for the addition of extra features. View the new website at for up to date information on their shower, shopfront, railing and balustrade software. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login 2008 Messe Düsseldorf 2202

85 MyCatalog MyCatalog Softsolution technical software products GmbH COMPANY NEWS Address Kapuzinergasse Waidhofen an der Ybbs Austria Telephone Fax Internet Address Booth Hall 17 A Surface, contour and imperfection measurement and control Measuring devices to be used on site Surface, contour and imperfection measurement and control LineScanner Dimensional and surface quality check in a path-through process The LineScanner system is one of the most innovative products of Softsolution. This system is able to check the glass quality regarding measurements and detection of scratches, chips, inclusions and so on, based on a modular technology which allows flexibility for the future. Two requirements (automatic size detection and glass surface quality conrol) are covered within one machine. his makes this system unbeatable! The secret to develop such systems at an un-beatable price level with highest quality is to use state of the art technology combine with perfect software. This combination solves the major problem in this area --> detecting the exact information of moving glass on existing transportation systems. Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login 2008 Messe Düsseldorf 2203

86 MyCatalog MyCatalog Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login Service linksback to topprivacy PolicyTerms of UsePrint pagerecommend this page Messe Düsseldorf More informations and functions Search Suchwort eingeben: function openlogin( id ) { var ele = xgetelementbyid( id ); if ( ele ) { if (ele.style.display == "block") { xdisplay( ele, "none" ); } else { xdisplay( ele, "block" ); } } else { alert('nix gefunden') } return; } function show_password(text, pwd) { var ele1 = xgetelementbyid( text ); var ele2 = xgetelementbyid( pwd ); if ( ele1 && ele2 ) { xdisplay( ele1, "none" ); xdisplay( ele2, "inline" ); ele2.focus(); } else { alert('nix gefunden') } return; } function submit_login( show_only_one_box ) { var ele = xgetelementbyid( "oos_username" ); if (ele.value == "Ident No.") { ele.value=''; } var ele = xgetelementbyid( "order_no" ); if (ele.value == "Stand Order No.") { ele.value=''; } var ele = xgetelementbyid( "username" ); if (ele.value == "Login Code" ele.value == "" ele.value == "") { ele.value=''; } /* Setze die jeweils anderen Loginfelder leer */ if ( show_only_one_box== 'usr' ) { var ele = xgetelementbyid( "oos_username" ); ele.value=''; var ele = xgetelementbyid( "order_no" ); ele.value=''; var ele = xgetelementbyid( "passwd1" ); ele.value=''; } else if ( show_only_one_box=='exh' ) { var ele = xgetelementbyid( "username" ); ele.value=''; var ele = xgetelementbyid( "passwd" ); ele.value=''; } var ele = xgetelementbyid( "loginbox" ); ele.submit(); } Login for Exhibitors Ident No.: Stand Order No.: Password: Questions concerning your password or OOS? Phone:+49/ Online-Support for Visitors & Press Login Code: Password: Forgot your password? Create user account Apply for Press Login 2008 Messe Düsseldorf 2204

87 MyCatalog MyCatalog Solartron Metrology Division, AMETEK GmbH Address Rudolf-Diesel-Str Meerbusch Germany Telephone Fax Internet Address Booth Hall 12 B Surface, contour and imperfection measurement and control Control and automation technology Surface, contour and imperfection measurement and control Digital and Analogue Universal Gauges Block Gauge :: 2 mm, 5 mm and 10 mm Total Measuring Range :: Repeatability: <0.25 µm :: Compact size 2 mm unit :: Digital, LVDT and Half Bridge :: Pneumatic or Spring Actuation :: Adjustable Anti-rotation Guide :: All Stainless Steel Construction :: Large Changeable Range of Tips :: IP65 Protection :: Good linearity over the full measuring range :: High Accuracy :: Traceable calibration Solartron s new family of Block Gauges makes precision measurements of bores and cavities a simple and reliable process. More generally, the use of these devices is recommended in applications where space is limited and where the use of axial probes is not possible. The family of universal gauges includes 2 mm, 5 mm and 10 mm measurement ranges, the 5 mm unit is used in most gauging applications and the 10 mm unit is designed for applications requiring a longer range. The 2 mm unit is a miniaturised version in length, height and thickness and is recommended for applications where space is very restricted. The block gauges are available in LVDT, half bridge or digital variants, and offer unrivalled ruggedness, accuracy and repeatability. All three units are extremely versatile and provide datum surfaces and all the adjustments required for precision gauging applications. Sparklike Ltd Address Särkiniementie 5 C Helsinki Finland Telephone Fax Internet Address Booth Hall 14 E Measurement, control and inspection of gas-filling levels Gasglass Measurement, control and inspection of gas-filling levels 2008 Messe Düsseldorf 2205

88 MyCatalog MyCatalog The Gasglass-1002-instrument does its Argon testing and Krypton testing with high precision giving the user an immediate knowledge of the IG s quality. The insulated glass does not any more require modifications and measurements can be made on the site within a few seconds. Quality Control - You can measure every IG unit ever producedargon Retention - You can measure the IG units several times over a period of timetracking - Every testing can be logged with the supplied software Gasglass-Handheld Gasglass-Handheld is a gas fill analyser for windows and doors. It is battery-operated and the only way in the world for measuring Argon and Krypton levels in insulating glass windows. The Gasglass-Handheld s new design allows a freedom of movement and enables total quality control for windows and doors. Used by: insulating glass manufacturerswindow manufacturersbuilding inspectionbuilding contractorstest laboratories Strainoptics, Inc. Address 108 West Montgomery Avenue North Wales, PA USA Telephone Fax Internet Address Booth Hall 12 C Measurement and control of glass tension Surface, contour and imperfection measurement and control Measuring devices to be used on site Measurement and control of glass tension AUTO-GASP surface stress polarimeter With the new AUTO-GASP,you can automatically measure surface stress with Point-and-Click Speed and Convenience! Includes Video GASP, licensed software, and cables. Conversion kit available for existing Video GASP or Laser GASP customers. Works with Windows XP or VISTA desktop or laptop computers with two available USB ports. No data board required. Stores images and data for later retrieval and/or analysis. Multiple licenses available. Link zu weiterer Information DIAS-1600 Stress Analyzer The DIAS-1600 Stress Analyzer uses digital imaging technology for stress inspection applications. This PC-based system is used for quality control, process control, failure analysis, product development, and research to ensure that residual stresses remain within specified limits. This package is ideal for products in which very low stresses can hamper product performance, such as optical components, lenses, compact disks, annealed parts, glass seals, TV glass, etc Link zu weiterer Information GES-100 Edge Stress Meter The GES-100 Edge-Stress Meters are light, portable, battery-operated instruments that are specially designed to measure edge stress in annealed, heat-strengthened, and tempered glass. These instruments are used for non-destructive, precision measurement in accordance with ASTM test method C GES-100 Edge Stress Meters can be used on both flat and curved glass. Models include: GES-100 Edge-Stress Meter Includes a double-wedge compensator, generally used for tempered glass applications. GES-100-MWA Edge-Stress Meter General-purpose instrument includes a single-wedge compensator. GES-100-MWA-HS High Sensitivity Edge-Stress Meter Special model for annealed glass measurement or other low-stress applications where 2008 Messe Düsseldorf 2206

89 MyCatalog MyCatalog greater measurement sensitivity is desired Link zu weiterer Information Laser GASP Surface Stress Polarimeter Strainoptics' GASP Polarimeter is a portable instrument for measuring surface stress in heat-strengthened and tempered glass. It can also be used to confirm stress-relief in annealed glass and to validate furnace settings for manufacturers of safety glass. The standard GASP model is for flat or slightly curved surfaces, while the GASP-CS version is designed to accommodate a curvature greater than 8 inches (200 mm). Both models may be ordered with either a laser or fiberoptic light source. The laser model features a rechargeable battery pack and offers the broadest range of measurement, up to 25,000 psi (180 MPa). Strainoptics GASP polarimeters are: Non-destructive Easy to operate Compliant with all industry specifications, including ASTM C1048, C1279 and CE marking requirements. For in-plant or field use Link zu weiterer Information PES-100 Portable PC-Based Edge Measurement System The Model PES-100 automates the off-line measurement of edge stress in automotive, as well as other glass applications. It uses the company s patented, non-destructive stress measurement technology, combined with proprietary and user-friendly Windows-based software and a PC workstation, to provide fast, accurate and repeatable readings of residual stress required for QC of automotive glazing. Because the process is almost entirely automated, no special operator training or skills are required. To obtain an automatic measurement of stress in a particular sample, the operator simply passes a lightweight scanning probe along several small (typically 2 to 4 inch) segments of the edge being inspected. The software reports the maximum tensile and edge-compression stress values for each edge scan and also displays a graph of stress vs. position on the computer's monitor. The entire process takes only seconds to complete. Link zu weiterer Information VRP-100 Reflection Polarimeter The VRP-100 Reflection Polarimeter System enables fast, accurate, and non-destructive measurement of residual stress in automotive windshields and other glass products containing black bands or painted areas. In fact, sensitivity and precision of the system is effectively twice that of transmissive systems. It is currently in use by many of the world's leading automobile manufacturers and automotive glass fabricators. The VRP-100 permits accurate stress measurement within the black painted band, without the need for removing paint or making special parts. The polarimeter provides a full-field view of the edge region, allowing the operator to recognize problem areas at a glance. A reflective target allows clear areas of the glass to be measured. Options include a calibration gauge and a high-intensity illuminator for measuring in transmissive mode. In addition to high-efficiency polarization optics, the VRP-100 system is supplied with a 150-watt fiberoptic illuminator and a color-enhanced Senarmont analyzer. Measurements are read directly from a calibrated scale. Link zu weiterer Information Surface, contour and imperfection measurement and control Roll Wave Gauges Roll wave distortion can be visually observed in tempered and heat-strengthened glass. The heat treatment process can cause the glass to bow and warp, viewed as ripples or optical distortion of reflected images. Strainoptics manufactures two basic types of manually operated roller-wave gauges, the "flat-bottom" type and the "3-point contact" design. Each can be used with test methods published by the Glass Association of North America (GANA) and ASTM. Link zu weiterer Information Messe Düsseldorf 2207

90 MyCatalog MyCatalog SVA - Industrie Fernseh GmbH Symplex Vision Systems GmbH Address Marie-Curie-Str Hilden Germany Telephone Fax Internet Address Booth Hall 15 F01 Address Grüntenstr. 10A München Germany Telephone Fax Internet Address Booth Hall 13 D Components and accessories (suppliers to the glass machinery industry) Video monitoring systems Measurement and control of glass thickness Measurement and control of speed Surface, contour and imperfection measurement and control Surface, contour and imperfection measurement and control POWERFUL FINISH INSPECTION Measurement and control of glass thickness Glasbreitenmessung Gesamtmessbereich 3200mm mm 2008 Messe Düsseldorf 2208

91 MyCatalog MyCatalog 700 containers per minute available in various configurations for different finish diameters. finkon-gl for standard finish (28mm, 35mm max.) finkon-wgl for wide mouth finish finds chips, cracks, deformations, LOF, overpress, underfills, blisters, stones and more sealing surface defects minimum space requirement excellent minimum object resolution of down to 0,075mm2 highest accuracy due to progressive scan camera design software based, contact free inspection; operating platform Windows 2000 operates stand alone or in conjunction with existing equipment detection rate greater 99% operation via touch screen remote maintenance options plus networking options hose down tolerant (Nema 4x) Measurement, control and inspection of gas compounds Detectors for laminated glass Surface, contour and imperfection measurement and control LensColour Analyser TFM-1 The TFM-1 instrument allows the fast and accurate determination of the colour values L*, a* and b*, the UV transmission TUV 380nm and TUV400nm and the light transmission Tv in accordance with the DIN EN ISO standard of ophthalmic lenses with refractive power of up to ± 20 diopters. General features: Fast and reliable color determination Refractive power independent measurements Easy to use Time and cost savings 2 channel system for precise referencing Central database management Link zu weiterer Information tec5 AG Address In der Au Oberursel Germany Telephone Fax Internet Address Booth Hall 13 D36 Transmission measuring head Transmission measuring head in U-form with integrated optical emitter and receiver unit and mechanical Interface for fixing to a glass pane. The head can easily be connected to a MultiSpec system. Link zu weiterer Information Measurement, control and inspection of gas compounds Transmittance and reflectance measurements Laboratory equipment Surface, contour and imperfection measurement and control 2008 Messe Düsseldorf 2209

92 MyCatalog MyCatalog AMIRAN, the new and nearly invisible glass from SCHOTT, is an optical interference anti-reflective glass, dip-coated on both sides, with a residual reflection of approximately 1%. The quality inspection of these glasses is controlled by tec5 technology in transmittance and reflectance measurements, directly on band-conveyor Detectors for laminated glass Tempsens Instruments Put Ltd. Address B-188A, Road No. 5, MIA Udaipur-Rajasthan India Telephone Fax Internet Address Booth Hall 12 D59 Film thickness determination on transparent samples tec5 supplies diode-array spectrometer systems (UV-VIS)for thin film measurements based on white light interference. Single and dual layers in the range of 0.1 to 100 m geometrical thickness can be determined at high rates. The instruments of the MultiSpec series in 19 housings can be easily fitted to a process installation. For laboratory use the Evaluation Line series is a reasonable priced solution, as well for mobile applications. The used MMS spectral sensors from Carl Zeiss guarantee an outstanding wavelength reproducibility and therefore high precision thickness data. Link zu weiterer Information J, K, T, E, N Reflection measurements in vacuum deposition installations Quality control during production requires a measurement setup robust matched to the ambient conditions. High stability and reproducibility of the measurement results over a long period of time are essential. Furthermore, if the data acquisition has to be performed in a vacuum deposition chamber the setup should be simple aned maintenance as low as possible. Link zu weiterer Information Measurement and control of glass temperature Measurement and control of glass temperature Base Metal Thermocouples Type Element size (MI) 1, 1.5, 3, 4.5, 6.8 (mm) (Non-MI) 1.2, 1.6, 2, 2.5, 3.2 (mm) Protection Sheath Seamless SS 316, SS 310, HRS 446, INCONEL, Nickel, Hastalloy, Titanium, Ceramic, Silicon Carbide Monel etc. Configuration Simplex / Duplex / Multipoints Noble Metal Thermocouples 2008 Messe Düsseldorf 2210

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