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Controlled polymorphic competition -- a path to tough and hard ceramics

cond-mat.mtrl-sci · 2024-12-20 · conditional · novelty 6.0

Atomic-scale plasticity from cubic-to-hexagonal transformation and dislocation emission boosts fracture toughness and strength of Ti1-xAlxN up to an optimum at x about 0.6, then declines as premature transformation weakens the material.

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  • Controlled polymorphic competition -- a path to tough and hard ceramics cond-mat.mtrl-sci · 2024-12-20 · conditional · none · ref 30

    Atomic-scale plasticity from cubic-to-hexagonal transformation and dislocation emission boosts fracture toughness and strength of Ti1-xAlxN up to an optimum at x about 0.6, then declines as premature transformation weakens the material.