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A Model of Structural Relaxation in Glass

Journal of the American Ceramic Society · 1971 · Vol. 54(10) · pp. 491–498
O. S. Narayanaswamy

Abstract

Study of the time dependence of physical properties in the transformation range of glass is complicated by the “memory effect” and the inherent nonlinearity which are characteristic of structural relaxation. A multiparameter model of structural relaxation is presented that differs from earlier models in that it takes account of both these effects. This model fits available experimental data well; these data were obtained for the most part by observing the evolution of properties (such as density or refractive index) following a step change in temperature. The present model also permits prediction of the physical properties of glass subjected to arbitrary and more complex temperature‐time histories. It should, therefore, also be useful in the rational design of heat treating processes such as annealing.

Glass properties and applicationsMaterial Dynamics and PropertiesCultural Heritage Materials AnalysisRelaxation (psychology)Annealing (glass)Statistical physicsMaterials scienceRefractive indexThermodynamicsNonlinear systemRange (aeronautics)PhysicsComposite material
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References
RELATION BETWEEN INELASTIC DEFORMABILITY AND THERMAL EXPANSION OF GLASS IN ITS ANNEALING RANGE*
Journal of the American Ceramic Society · 1946 · 1,451 citations
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