High Temperature Glass Melt Property Database for Process ModelingThomas P. Seward, III, Terese Vascott Wiley, 01.09.2005 - 308 Seiten This book is the result of a study to develop a high-temperature melt properties database with sufficient comprehensiveness and reliability to allow mathematical modeling of glass melting and forming processes for improved product quality, improved efficiency and lessened environmental impact. The study was initiated by the U.S. glass industry through the National Science Foundation Industry/University Center for Glass Research at Alfred University (CGR) and funded in part by a grant from the U.S. Department of Energy's Industrial Technologies Program. |
Inhalt
Commercial and Statistically Designed Glass Compositions | 27 |
Gas Solubility and Water Diffusion in Glasses and Melts | 47 |
Solubility and Diffusion of SO3 in SodaLimeSilicate | 75 |
Urheberrecht | |
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absorption coefficient absorption spectra Alfred University alkali American Ceramic Society analysis analyzed target analyzed atmosphere atoms/gm-atm base glass borosilicate glasses bubbles calculated calibration cell Chapter commercial glasses constant container glass crucible curve decrease determined Diffusion of Water E-glass equation factors fiber wool glasses float glass furnace gas solubility glass compositions glass melts Glass Properties glass viscosity Glass-Forming Melts glasses and melts heat capacity high temperature electrical hydroxyl J. E. Shelby K₂O Kucuk layer Li₂O low-expansion borosilicate glass measurements melt properties Mesko Model standard error molten glass Na,O Na₂O oxide Pa·s Pa's parallel plate phonon prediction errors pressure Prokhorenko radiative refractive index Sample ID saturation SciGlass silica silicate glasses SiO2 soda lime specimen sulfur surface tension TABLE target analyzed target technique temperature electrical resistivity temperature range thermal conductivity thermocouple TiO2 Tournour tube TV panel glasses values Varshneya viscometer Viscometry viscosity