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arxiv: 1809.06822 · v1 · pith:SVIV2R2Gnew · submitted 2018-09-18 · ❄️ cond-mat.mtrl-sci

Twinning-induced pseudoelastic behavior in (MoW)₈₅(TaTi)_(7.5)Zr_(7.5)

classification ❄️ cond-mat.mtrl-sci
keywords behaviorpseudoelasticloadingalloydeformationduringstrainadditionally
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We provide a critical atomistic evidence of pseudoelastic behavior in complex solid-solution BCC Mo-W-Ta-Ti-Zr alloy. Prior to this work, only limited single-crystal BCC solids of pure metals and quaternary alloys have shown pseudoelastic behavior at low temperatures and high strain rates. The deformation mechanisms investigated using classical molecular simulations under tensile-compressive loading reveal temperature-dependent pseudoelastic behavior aided by twinning during the loading-unloading cycle. The pseudoelasticity is found to be independent of loading directions with identical cyclic deformation characteristics during uniaxial loading. Additionally, temperature variation from 77 to 1500 K enhances the elastic strain recovery in the alloy.

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