Determining Kinetic Parameters for Isothermal Crystallization of Glasses

Non‐isothermal crystallization techniques are frequently used to determine the kinetic parameters for crystallization in glasses. The techniques are experimentally simple and quick, compared with isothermal techniques. However, the analytical models used for non‐isothermal data analysis, that were d...

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Bibliographic Details
Published inJournal of the American Ceramic Society Vol. 90; no. 3; pp. 769 - 773
Main Authors Ray, C. S., Zhang, T., Reis, S. T., Brow, R. K.
Format Journal Article
LanguageEnglish
Published Malden, USA Blackwell Publishing Inc 01.03.2007
Wiley Subscription Services, Inc
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Summary:Non‐isothermal crystallization techniques are frequently used to determine the kinetic parameters for crystallization in glasses. The techniques are experimentally simple and quick, compared with isothermal techniques. However, the analytical models used for non‐isothermal data analysis, that were derived from models originally developed for describing isothermal transformation kinetics, are fundamentally flawed. The present paper describes a technique for determining the kinetic parameters for isothermal crystallization in glasses, which eliminates most of the common problems that generally make the study of isothermal crystallization laborious and time consuming. In this technique, the volume fraction of a glass that is crystallized as a function of time during an isothermal hold was determined in a separate experiment using differential thermal analysis. The activation energy (345±10 kJ/mole) and Avrami parameter (0.89±0.09) for crystallization of Li2O·2SiO2 glass determined by the present technique are consistent with the similar values reported in the literature.
Bibliography:istex:A0ECC69A67AAD59F9E8B08DBA2A4F24D599ED7FD
ark:/67375/WNG-P7THL2W4-P
ArticleID:JACE01478
Presented at the 8th International Symposium on Crystallization in Glasses and Liquids, Jackson Hole, USA.
E. Zanotto—contributing editor
ObjectType-Article-2
SourceType-Scholarly Journals-1
ObjectType-Feature-1
content type line 23
ISSN:0002-7820
1551-2916
DOI:10.1111/j.1551-2916.2006.01478.x