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Mechanics of Transformation‐Toughening in Brittle Materials

Journal of the American Ceramic Society · 1982 · Vol. 65(5) · pp. 242–246
Robert M. McMeekingA.G. Evans

Abstract

Particles which undergo a stress‐induced martensitic transformation are known to toughen certain brittle materials. The enhanced toughness can be considered to originate from the residual strain fields which develop following transformation and tend to limit the crack opening. The increased toughness can estimated from the crack‐tip stress‐intensity change induced by the transformation of a volume of material near the crack tip. It is found that the initial zone, prior to crackgrowth, provides no change in stress intensity. As the crack grows, the zone (associated with a positive transformation strain) induces a stress‐intensity reduction that rises to a maximum level after some crack propagation. The influence of particle‐size distribution on the stress‐intensity reduction is also discussed.

Advanced ceramic materials synthesisAdvanced materials and compositesHigh-Velocity Impact and Material BehaviorMaterials scienceStress intensity factorBrittlenessToughnessComposite materialFracture mechanicsFracture toughnessTougheningCrack closureResidual stress
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References
Some remarks on elastic crack-tip stress fields
International Journal of Solids and Structures · 1972 · 1,021 citations
The determination of the elastic field of an ellipsoidal inclusion, and related problems
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1957 · 12,766 citations
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