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Magnetic field-induced martensitic variant reorientation in magnetic shape memory alloys

机译:磁性形状记忆合金中的磁场诱导马氏体变体取向

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The magnetically induced martensitic variant reorientation process under applied mechanical load in magnetic shape memory alloys (MSMAs) is considered. Of particular interest is the associated nonlinear and hysteretic macroscopic strain response under variable applied magnetic field in the presence of stress, also known as the magnetic shape memory effect (MSME). A thermodynamically consistent phenomenological constitutive model is derived which captures the magnetic shape memory effect caused by the martensitic variant reorientation process, using internal state variables, which are chosen in consideration of the crystallographic and magnetic microstructure. The magnetic contributions to the free energy function considered in this work are the Zeeman energy and the magnetocrystalline anisotropy energy. Activation functions for the onset and termination of the reorientation process are formulated and evolution equations for the internal state variables are derived. The model is applied to a two-dimensional special case in which the application of a transverse magnetic field produces axial reorientation strain in a NiMnGa single-crystal specimen under a constant compressive axial stress. It is explicitly shown how the model parameters are obtained from experimental data. Model predictions of magnetic field-reorientation strain hysteresis loops under different applied stresses are discussed.
机译:考虑了在磁性形状记忆合金(MSMA)中施加机械载荷下的磁诱导马氏体变体重新定向过程。特别令人感兴趣的是在存在应力的情况下在可变施加的磁场下相关的非线性和滞后宏观应变响应,也称为磁性形状记忆效应(MSME)。推导了一个热力学上一致的现象本构模型,该模型使用内部状态变量来捕获由马氏体变体重新定向过程引起的磁性形状记忆效应,该内部状态变量是根据晶体学和磁性微观结构选择的。这项工作中考虑的对自由能函数的磁性贡献是塞曼能和磁晶各向异性能。制定了用于重新定向过程的开始和终止的激活函数,并推导了内部状态变量的演化方程。该模型适用于二维特殊情况,其中横向磁场的施加在恒定压缩轴向应力下在NiMnGa单晶样品中产生轴向重新定向应变。明确显示了如何从实验数据中获得模型参数。讨论了不同施加应力下磁场取向应变磁滞回线的模型预测。

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