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首页> 外文期刊>International Journal of Solids and Structures >A 2D finite element based on a nonlocal constitutive model describing localization and propagation of phase transformation in shape memory alloy thin structures
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A 2D finite element based on a nonlocal constitutive model describing localization and propagation of phase transformation in shape memory alloy thin structures

机译:基于非局部本构模型的二维有限元,描述了形状记忆合金薄结构中相变的定位和传播

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Here, the effects of localization and propagation of martensitic phase transformation on the response of SMA thin structures subjected to thermo-mechanical loadings are investigated using nonlocal constitutive model in conjunction with finite element method. The governing equations are derived based on variational principle considering thermo-mechanical equilibrium and the spatial distribution of the nonlocal volume fraction of martensite during transformation. The nonlocal volume fraction of martensite is defined as a weighted average of the local volume fraction of martensite over a domain characterized by an internal length parameter. The local version of the thermo-mechanical behavior model derived from micromechanics considers the local volume fraction of martensite and the mean transformation strain. A 4-noded quadrilateral plane stress element with three degrees of freedom per node accounting for in-plane displacements and the nonlocal volume fraction of martensite is developed. Numerical simulations are conducted to bring out the influence of material and geometrical heterogeneities (perturbations/ defects) on the localization and propagation of phase transformation in SMA thin structures. Also, a sensitivity analysis of the material response due to the localization and the other related model parameters is carried out. The detailed investigation done here clearly shows that the localization of phase transformation has significant effect on the response of shape memory alloys.
机译:在此,使用非局部本构模型并结合有限元方法,研究了马氏体相变的局部化和传播对SMA薄结构在热机械载荷作用下的响应的影响。控制方程是基于变分原理,考虑了热机械平衡和相变过程中马氏体非局部体积分数的空间分布而得出的。马氏体的非局部体积分数定义为在以内部长度参数为特征的区域上马氏体的局部体积分数的加权平均值。由微力学导出的热力学行为模型的局部形式考虑了马氏体的局部体积分数和平均相变应变。开发了一个四节点四边形平面应力单元,每个节点具有三个自由度,说明平面内位移和马氏体的非局部体积分数。进行了数值模拟,以找出材料和几何异质性(扰动/缺陷)对SMA薄结构中相变的定位和传播的影响。此外,还对由于定位和其他相关模型参数引起的材料响应进行了敏感性分析。在此进行的详细研究清楚地表明,相变的局域性对形状记忆合金的响应具有重大影响。

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