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A modified Landau phenomenological constitutive model for the tension-compression asymmetry in one-dimensional Shape Memory Alloys

机译:一维形状记忆合金中拉伸压缩不对称的改进的Landau现象概况模型

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摘要

Shape Memory Alloys (SMA) have unique properties because of their unique ability to reversibly transform when subjected to appropriate thermal and/or mechanical loads. A phenomenological constitutive model is constructed involving phase transformation in one-dimensional SMA. The model is based on the Landau theory and includes the coupling effect between thermal and mechanical fields. Taking into account the tension?compression asymmetry, an asymmetric potential energy function is constructed, according to the three-dimensional deformation of the crystalline lattice. Both single-crystalline model and poly-crystalline model are proposed, and the angle between the lattice plane and the force (deformation) direction is considered in the poly-crystalline model. Numerical experiments have been carried out, which can well capture the asymmetric phase transformation and tension?compression asymmetry.
机译:形状记忆合金(SMA)具有独特的特性,因为它们在经受适当的热和/或机械负载时可逆地变换的独特能力。 构建现象学组成型模型,包括在一维SMA中的相变。 该模型基于Landau理论,包括热和机械领域之间的耦合效果。 考虑到张力?压缩不对称,根据结晶晶格的三维变形,构建了不对称的电位能功能。 提出了单晶模型和多晶硅模型,并在多晶硅模型中考虑晶格平面和力(变形)方向之间的角度。 已经进行了数值实验,其可以很好地捕获不对称相变和张力?压缩不对称性。

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