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首页> 外文期刊>Journal of intelligent material systems and structures >Development of a Quasi-static Model of NiMnGa Magnetic Shape Memory Alloy
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Development of a Quasi-static Model of NiMnGa Magnetic Shape Memory Alloy

机译:NiMnGa磁性形状记忆合金准静态模型的建立

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A quasi-static model for NiMnGa magnetic shape memory alloy is formulated along the lines of the Brinson and Tanaka SMA constitutive models. Since the shape memory effect (SME) and pseudoelasticity exist in both NiTi and NiMnGa, constitutive models for SMAs offer a basis for ferromagnetic shape memory alloys (FSMA) modeling. Two types of quasi-static tests involving constant external magnetic field and constant stress are conducted to identify nine model parameters. These model parameters include free strain, Young's moduli, fundamental critical stresses, fundamental critical threshold fields, and stress-influence coefficients. The Young's moduli of the material in its field and stress preferred states are determined to be 450 and 820 MPa respectively, while the free strain is measured to be 6.5%. These test data are used to assemble a critical stress-magnetic field intensity profile that is useful for determining the model parameters and for predicting the various states of the material for a wide range of magnetic or mechanical loading conditions. Although all of the parameters can be obtained from constant magnetic field testing, useful insight into NiMnGa actuator behavior can be gained from constant axial stress tests. Once implemented, the analytical model shows good correlation with the test data, capturing both the magnetic shape memory effect and pseudoelasticity. Because the model is piecewise linear, it does not capture material behavior resulting from nonlinear effects such as magnetic saturation. Despite its inherent limitations, this model shows encouraging results, providing a solid basis for future modeling efforts.
机译:NirinGa磁性形状记忆合金的准静态模型是根据Brinson和Tanaka SMA本构模型建立的。由于NiTi和NiMnGa均存在形状记忆效应(SME)和拟弹性,因此SMA的本构模型为铁磁形状记忆合金(FSMA)建模提供了基础。进行了两种类型的准静态测试,涉及恒定的外部磁场和恒定的应力,以识别九个模型参数。这些模型参数包括自由应变,杨氏模量,基本临界应力,基本临界阈值场和应力影响系数。确定材料在其场和应力优选状态下的杨氏模量分别为450和820 MPa,而自由应变测得为6.5%。这些测试数据可用于组装临界应力-磁场强度曲线,该曲线对于确定模型参数以及在广泛的磁性或机械载荷条件下预测材料的各种状态很有用。尽管可以通过恒定磁场测试获得所有参数,但是可以通过恒定轴向应力测试获得对NiMnGa致动器性能的有用了解。一旦实现,分析模型将显示与测试数据的良好相关性,同时捕获磁形状记忆效应和伪弹性。由于模型是分段线性的,因此它无法捕获由于非线性效应(例如磁饱和)而导致的材料行为。尽管存在固有局限性,但该模型显示出令人鼓舞的结果,为将来的建模工作提供了坚实的基础。

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