2023
DOI: 10.3390/cryst13060860
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Void Nucleation and Growth from Heterophases and the Exploitation of New Toughening Mechanisms in Metals

Abstract: Heterophases, such as precipitates, inclusions, second phases, or reinforcement particles, often drive void nucleation due to local incompatibilities in stresses/strains. This results in a significant life-limiting condition, as voids or their coalescence can lead to microcracks that reduce the ductility and fatigue life of engineering components. Continuum-mechanics-based analytical models have historically gained momentum due to their relative ease in predicting failure strain. The momentum of such treatment… Show more

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Cited by 6 publications
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