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Numerical Modeling of Magnetomechanical Characteristics of Ni–Mn–Ga Magnetic Shape Memory Alloy

机译:Ni-Mn-Ga磁性形状记忆合金的磁机械特性数值模拟

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The magnetic field-induced stress and strain of magnetic shape memory alloy (MSMA) are fundamental to describe its magnetomechanical behavior. In order to investigate the operating characteristics of MSMA-based actuator, this paper presents a 3-D quasi-static modeling approach of magnetomechanical behavior of MSMA with the improved constitutive equation by introducing the activation field strength. The relationships between three critical parameters of the activation field strength, the maximum of strain, as well as the saturation field strength, and the pre-compressing force are obtained by fitting the data collected from the experiment. Two kinds of test specimen in different geometric dimensions are studied by the numerical modeling method. Considering that the key material parameters vary dramatically depending on the size and composition, verifications through experiments show that this numerical modeling and simulation can accurately describe the force and deformation characteristics of MSMA. The modeling analysis and simulation results are significant to design of the actuator based on MSMA to predict the actuator performance under the given working conditions.
机译:磁场诱导的形状记忆合金(MSMA)的应力和应变是描述其磁机械行为的基础。为了研究基于MSMA的执行器的工作特性,通过引入激活磁场强度,提出了具有改进本构方程的MSMA磁机械行为的3-D准静态建模方法。活化场强度,最大应变以及饱和场强度和预压缩力这三个关键参数之间的关系是通过拟合实验收集的数据获得的。通过数值建模方法研究了两种不同几何尺寸的试样。考虑到关键材料参数随尺寸和成分的不同而有很大差异,通过实验验证表明,这种数值建模和仿真可以准确地描述MSMA的力和变形特性。建模分析和仿真结果对基于MSMA的执行器设计,以预测给定工作条件下的执行器性能具有重要意义。

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