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A constitutive level-set model for ferromagnetic shape-memory alloys

机译:用于铁磁形状记忆合金的组成型水平模型

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This work proposes a phenomenological level-set model for ferromagnetic shape-memory alloys (FSMAs), developed under consistent thermodynamic analysis. A set of adequate internal and external variables is chosen so as to describe the rate-independent magneto-mechanical response of a FSMA single crystal. Almost every phenomenological model in bibliography adopts martensitic volume fractions as internal variables. The novelty of this work is the introduction of a continuous level-set function as an internal variable of state, which accounts implicitly for the dissipative twin boundary motion in the evolution of inelastic reorientation of martensitic variants. Following the usual internal variable formalism within the framework of standard magnetomechanics, the evolution equations for the level-set function are derived for the forward and reverse variant reorientation processes. The model is implemented in a two-dimensional special case, where the reduced equations are numerically solved capturing the important effects of stress-induced and magnetic field-induced martensitic variant reorientation, such as magnetization hysteresis, pseudoelastic/partial pseudoelastic behavior and magnetic shape-memory effect. The proposed constitutive model is capable of explaining the constitutive response caused by the reorientation of martensitic variants in FSMAs and may be further improved so as to be implemented in even more complicated situations, such as dynamic and rate-dependent analysis.
机译:该工作提出了一种在一致热力学分析下开发的铁磁形状记忆合金(FSMAS)的现象学水平设定模型。选择了一组足够的内部和外部变量,以描述FSMA单晶的速率无关磁力机械响应。几乎所有参考书目的现象学模型都是马氏体体积分数作为内部变量。这项工作的新颖性是引入作为状态的内部变量的连续水平集作用,其隐含地估算了马氏体变体的非弹性重新定向演变中的耗散双边界运动。在标准磁力学框架内常用的内部变量形式,导出了用于前进和反向变体重新定向过程的级别集功能的演化方程。该模型在二维特殊情况下实现,其中缩小方程在数值上求解捕获应力诱导和磁场诱导的马氏体变体重新定向的重要效果,例如磁化滞后,伪弹性/部分伪弹性行为和磁性 - 记忆效应。所提出的本构模型能够解释由FSMA中的马氏体变体的重新定向引起的本构响应,并且可以进一步改善,以便在更复杂的情况下实现,例如动态和速率依赖性分析。

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