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Isothermal Analysis of the Crystallization Kinetics in Lithium Disilicate Glass using Trans Temp FurnaceCrystallization kinetics for lithium disilicate, Li2O2SiO2, (LS2) glass has been studied extensively by nonisothermal methods, but only a few studies on the isothermal crystallization kinetics of LS2 are available. In the present research, isothermal crystallization experiments or the LS2 glass were conducted in a Trans Temp furnace between 600 and 635 C, and selected properties such as the activation energy for crystallization (E), crystal growth index or Avrami parameter (n), the concentration of quenched-in nuclei in the starting glass (Ni) and the crystal nucleation rate (I) were measured. The crystal nucleation rate (I) was measured at only one selected temperature of 452 C, at this time. This commercial furnace has a 13 cm long isothermal heating zone (+/- 1 C) that allows precise heat treatment of relatively large samples. By placing a thermocouple within approx. 2 mm of the sample, it was possible to detect the heat of crystallization in the form of an isothermal crystallization exotherm during isothermal heat treatment of the sample. The values of E (318 plus or minus 10 kJ/mol), n (3.6 plus or minus 0.l), and N(sub i) (1.6 x 10(exp l2) m(sup -3)) calculated by analyzing these isotherms using the standard Johnson-Mehl-Avrami (JMA) equation were reproducible and in agreement with the literature values. The value of I, 1.9 x 10(exp 10) m(sup -3) s(sup -1) at 452 C, is an order of magnitude higher than the reported value for LS2.
Document ID
20070002144
Acquisition Source
Marshall Space Flight Center
Document Type
Conference Paper
Authors
Fuss, T.
(Saint-Gobain High Performance Materials Northboro, MA, United States)
Ray, C. S.
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Day, D. E.
(Missouri Univ. Rolla, MO, United States)
Date Acquired
August 24, 2013
Publication Date
January 1, 2006
Subject Category
Solid-State Physics
Meeting Information
Meeting: 8th International Symposium on Crystallization of Glasses and Liquids
Location: Jackson Hole, WY
Country: United States
Start Date: September 24, 2006
End Date: September 28, 2006
Distribution Limits
Public
Copyright
Other

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