By Waltraud M. Kriven
On October 28-29, 2003, the sixty fourth convention on Glass difficulties happened at the campus of the college of Illinois at Urbana-Champaign. This convention encompassed 4 subject classes: Refractories chaired via Daryl E. Clendenen and Thomas Dankert; strength and Combustion, chaired by means of Marilyn DeLong and Philip Ross; approach keep watch over, chaired through Ruud Berkens and Robert Lowhorn; and rising components, chaired via Larry McCloskey and Robert Thomas.
The papers awarded on the convention have been reviewed through the respective consultation chairs, and underwent minor modifying via the convention director, earlier than extra enhancing and creation by way of the yank Ceramic Society.
Chapter 1 floor therapy of AZS Refractories utilizing High?Density Infrared Heating (pages 2–12): T. N. Tiegs, F. C. Montgomery, D. C. Harper, C. A. Blue, M. Velez, M. Karakus and R. E. Moore
Chapter 2 research of Defects in High?Quality Glasses (pages 13–32): ok. R. Selkregg and A. Gupta
Chapter three overview of superior Silica Crown Refractory and Practices for Oxy?Fuel?Fired Glass Melters (pages 33–42): Alonso Gonzalez, John T. Brown, Roger P. Weilacher and Michael A. Nelson
Chapter four Engineered Fks Platinum strategies for High?Temperature purposes in trendy Glass construction (pages 43–56): Michael Oechsle, Hubertus Golitzer and Rudolf Singer
Chapter five Geopolymer Refractories for the Glass production (pages 57–80): Waltraud M. Kriven, Jonathan Bell and Matthew Gordon
Chapter 6 Anomalous Thermomechanical homes of community Glasses (pages 81–96): John Kieffer and Liping Huang
Chapter 7 complicated research equipment for the Characterization of Flames geared toward an Optimization of the warmth move techniques in Glass Melting Furnaces (pages 96–116): Axel Scherello
Chapter eight Alglass solar: An Ultra?Low?Nox Oxy Burner for Glass Furnaces with Adjustable size and warmth move Profile (pages 117–128): Bertrand Leroux, Pascal Duperray, Patrick Recourt, Remi Tsiava, Nicolas Perrin and George Todd
Chapter nine Glass Furnace lifestyles Extension utilizing Convective Glass Melting (pages 129–140): Neil Simpson, Dick Marshall and Tom Barrow
Chapter 10 fireplace sharpening with Premixing know-how (pages 141–152): Hans Mahrenholtz
Chapter eleven a unique Glass Furnace Combining the simplest of Oxy?Fuel and Air?Fuel Melting (pages 153–166): Mark D'Agostini, Michael E. Habel, Russell J. Hewertson, Bryan C. Hoke, Richard Huang, Julian L. Inskip, Kevin A. Lievre and Aleksandar G. Slavejkov
Chapter 12 How Mathematical Modeling might help lessen strength utilization for Glass Melting (pages 167–178): Erik Muijsenberg and Miroslav Trochta
Chapter thirteen Attenuation and Breakage within the non-stop Glass Fiber Drawing approach (pages 179–190): Simon Rekhson, Jim Leonard and Phillip Sanger
Chapter 14 strength Conservation possibilities within the Glass (pages 191–193): John D'Andrea
Chapter 15 program of quick Dynamic strategy Simulation to aid Glass Furnace Operation (pages 197–207): Olaf Op Den Camp, Oscar Verheijen and Sven?Roger Kahl
Chapter sixteen software of Batch Blanket tracking process in Glass Furnaces (pages 209–218): Jolanda Schagen, Ruud Beerkens, Annejans Faber, Peter Hemmann and Gunnar Hemmann
Chapter 17 Thermal Imaging of All Furnace inner Surfaces for tracking and keep watch over (pages 219–230): Serguei Zelepouga, David Rue, Ishwar Puri, Ping?Rey Jang, John Plodenic and John Connors
Chapter 18 development in Glass Blister caliber by means of Throat layout (pages 231–244): R. R. Thomas
Chapter 19 assessment of the actions of the Technical Committees of the foreign fee on Glass (pages 245–252): Henk De Waal
Chapter 20 contemporary advancements in Chemically reinforced Glasses (pages 253–266): David J. Green
Chapter 21 Glass artwork and Glass technological know-how: A collectively invaluable trade (pages 267–280): Margaret Rasmussen, Michael Greenman and John Brown
Chapter 22 Self?Repair of Glass and Polymers (pages 281–290): Carolyn Dry
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Extra info for 64th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 25, Issue 1
Holds for the low-calcia silica brick composition. Currently, a domestic manufacturer of silica is in preliminary discussions with Corning. 6. We must continue to collect input regarding the subjects noted for our three-legged stool. Anyone who can contribute their experience or observations regarding these subjects should do so. Here we have not covered furnace heatup, operation, or hot repairs as specifically related to silica crowns in oxy-gas-fired soda-lime tanks. If new and effective information is out there, we ask that you bring it forward.
A . t . AT} 11. If the thermal balance along the glass flow does not correspond to the technical requirements needed for good glass quality, then metallic platinum offers a further advantage. Because of its good resistivity, platinum 44 can be used as an electrical conductor to introduce energy. Direct electrically heated components (Fig. 1) currently represent the state of the art in the manufacture of high-grade technical glasses. Flow The total pressure within a flowing fluid is equal to the sum of the static and dynamic pressures and is dependent on the fluid’s velocity.
E. superstructure vs. melt contact AZS corrosion), we have made use of the chemistry of the AZS refractory samples discussed in this paper and also many other samples from our database. The defect represented by a triangle symbol in Area 1 is believed to have definitely originated from melt contact corrosion of AZS refractories. The defects represented by square symbols in the Area 3 are believed to have definitely originated from superstructure corrosion of AZS refractories. Defects covered in Areas 2 and 4 represent some uncertainty about the source, although we believe defects in Area 2 are most likely from an AZS melt contact source, and likewise the defects shown in Area 4 are most likely from an AZS superstructure source.