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Magneto-Mechanical Finite Element Analysis of Single Crystalline Ni2MnGa Ferromagnetic Shape Memory Alloy

机译:单晶Ni2MnGa铁磁形状记忆合金的磁机械有限元分析

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摘要

Based on an existing micromechanical constitutive model for Ni2MnGa ferromagnetic shape memory alloy single crystals, a three-dimensional quasi-static isothermal incremental constitutive model that is suitable for finite element analysis is derived by using Hamilton's variational principle. This equation sets up the coupling relation between the magnetic vector potential and the mechanical displacement. By using the incremental equation and ANSYS software, the mechanical behaviors of martensitic variant reorientation for Ni2MnGa single crystals are analyzed under magneto-mechanical coupling action. And the finite element results agree well with the experimental data. The methods used in the paper can well describe the mechanical behaviors of the material in complex fields.
机译:在现有的Ni2MnGa铁磁形状记忆合金单晶微机械本构模型的基础上,利用汉密尔顿的变分原理推导了适用于有限元分析的三维准静态等温增量本构模型。该方程式建立了磁矢量势和机械位移之间的耦合关系。利用增量方程和ANSYS软件,分析了Ni2MnGa单晶在磁-机械耦合作用下马氏体变取向的力学行为。有限元结果与实验数据吻合良好。本文使用的方法可以很好地描述材料在复杂领域中的力学行为。

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