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A phenomenological constitutive model for magnetic shape memory alloys.

机译:磁性形状记忆合金的现象本构模型。

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摘要

A thermodynamics-based constitutive model is derived which predicts the nonlinear strain and magnetization response that magnetic shape memory alloys (MSMAs) exhibit when subjected to mechanical and magnetic loads. The model development is conducted on the basis of an extended thermo-magneto-mechanical framework. A novel free energy function for MSMAs is proposed, from which the constitutive equations are derived in a thermodynamically-consistent manner. The nonlinear and hysteretic nature of the macroscopic material behavior is captured through the evolution of internal state variables which are motivated by the crystallographic and magnetic microstructures of MSMAs. Model predictions are presented for different relevant loading cases and analyzed in detail. Finally, magnetostatic boundary value problems for MSMAs are considered and numerically solved using the finite element method. For these computations the developed constitutive model provides the nonlinear magnetic properties of the MSMA. The knowledge of the magnetic field distribution in the computational domain as a function of the applied field, which results from this magnetostatic analysis, is useful for the proper interpretation of experimental results as well as the design of experiments and applications.
机译:推导了基于热力学的本构模型,该模型预测了磁性形状记忆合金(MSMA)在承受机械和磁性载荷时表现出的非线性应变和磁化响应。在扩展的热磁机械框架的基础上进行模型开发。提出了一种新型的MSMA自由能函数,从中以热力学一致的方式导出了本构方程。宏观材料行为的非线性和滞后性质是通过内部状态变量的演变而捕获的,内部状态变量是由MSMA的晶体学和磁微观结构驱动的。给出了针对不同相关载荷工况的模型预测,并进行了详细分析。最后,考虑了MSMA的静磁边界值问题,并使用有限元方法进行了数值求解。对于这些计算,已开发的本构模型提供了MSMA的非线性磁性。由静磁分析得出的关于计算域中的磁场分布与所施加场的函数关系的知识对于正确解释实验结果以及设计实验和应用很有用。

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