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Dynamic multiaxial behaviors of 3D shape memory alloy nanowires: A phase-field study

机译:3D形状记忆合金纳米线的动态多轴行为:相场研究

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This article focuses on the dynamic multiaxial behaviors of shape memory alloy (SMA) rectangular prismatic nanowires. A strain-based order parameter 3D phase-field model is used to study microstructure evolution and consequent thermo-mechanical behaviors in the cubic-to-tetragonal transformations in SMA nanowires. The FePd nanowire is subjected to axial-transverse and axial-torsion loadings paths. The numerical results demonstrate the strong influence of multiaxial loadings on microstructures and thermomechanical response. The variation of thermo-mechanical response stems from the nucleation of energetically favorable martensitic variants to the applied loading. The understanding of multiaxial thermomechanical response of nanowires is essential in developing better SMA-based devices.
机译:本文重点讨论形状记忆合金(SMA)矩形棱柱形纳米线的动态多轴行为。基于应变的阶次参数3D相场模型用于研究SMA纳米线从立方到四方转变中的微观结构演变以及随之而来的热机械行为。 FePd纳米线经受轴向横向和轴向扭转的加载路径。数值结果表明,多轴载荷对微观结构和热机械响应具有强烈影响。热机械响应的变化源于能量有利的马氏体变体对所施加载荷的形核。对纳米线的多轴热机械响应的理解对于开发更好的基于SMA的设备至关重要。

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