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Stress Corrosion and Static Fatigue of Glass

Journal of the American Ceramic Society · 1970 · Vol. 53(10) · pp. 543–548
Sheldon M. WiederhornL. H. Bolz

Abstract

Stress corrosion cracking of six glasses was studied using fracture mechanics techniques. Crack velocities in water were measured as a function of applied stress intensity factor and temperature, and apparent activation energies for crack motion were obtained. Data were consistent with the universal fatigue curve for static fatigue of glass, which depended on glass composition. Of the glasses tested, silica glass was most resistant to static fatigue, followed by the low‐alkali aluminosilicate and borosilicate glasses. Sodium was detrimental to stress corrosion resistance. The crack velocity data could be explained by the Charles and Hillig theory of stress corrosion. It is probable that stress corrosion of glass is normally caused and controlled by a chemical reaction between the glass and water.

Structural Analysis of Composite MaterialsGlass properties and applicationsEngineering and Material Science ResearchBorosilicate glassMaterials scienceCorrosionStress (linguistics)Composite materialStress intensity factorFracture mechanicsFracture (geology)Corrosion fatigueCracking
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References
Influence of Water Vapor on Crack Propagation in Soda‐Lime Glass
Journal of the American Ceramic Society · 1967 · 1,114 citations
Progress in ceramic science
Journal of Nuclear Materials · 1962 · 321 citations
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