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首页> 外文期刊>International Journal of Mechanical Sciences >Modelling and simulation of the superelastic behavior of shape memory alloys using the element-free Galerkin method
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Modelling and simulation of the superelastic behavior of shape memory alloys using the element-free Galerkin method

机译:使用无元素Galerkin方法对形状记忆合金的超弹性行为进行建模和仿真

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This paper is concerned with the application of the element-free Galerkin method to simulate the superelastic behaviour of shape memory alloys (SMA). The meshfree shape functions are derived from a moving least-squares interpolation scheme. A thermomechanical SMA constitutive law is used to describe the superelastic effect. The incremental displacement-based formulation for large deformation is developed by employing the meshfree shape functions and the continuum tangent stiffness tensor in the weak form of the equilibrium equations. By eliminating the unknown constrained nodal variables from the discrete equations, an effective approach is developed for the imposition of the essential boundary conditions. The numerical tests show that the proposed meshfree scheme can successfully reproduce the superelastic behaviour of shape memory alloys.
机译:本文涉及无元素Galerkin方法在模拟形状记忆合金(SMA)的超弹性行为中的应用。无网格形状函数是从移动最小二乘插值方案中得出的。热力学SMA本构关系用于描述超弹性效应。通过采用无网格形状函数和平衡方程的弱形式的连续切线刚度张量,开发了基于增量位移的大变形公式。通过从离散方程中消除未知的受约束节点变量,开发了一种有效方法来强加基本边界条件。数值试验表明,提出的无网格方案可以成功地再现形状记忆合金的超弹性行为。

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