Chen Yunshuai, Li Pengyang, Sun Jian, Chen Guoqing
School of Mechanical and Precision Instrument Engineering, Xi'an University of Technology, Xi'an 710048, China.
Materials (Basel). 2023 Jul 9;16(14):4914. doi: 10.3390/ma16144914.
This paper proposes a multilevel three-dimensional constitutive model based on a microscopically phenomenological approach from the domain rotation mechanism, which is a fully coupled self-consistent homogenization scheme considering the interactions between elastic-inelastic strain and hysteresis. Considering the interactions among magnetic domains, grains, polycrystalline complexes, and macroscopic phenomenology, we predict the nonlinear magnetostrictive response of Terfenol-D under different types of external force loads and magnetic excitations in various thermal environments involving multi-fields of coupled magnetic, elastic, thermal, and mechanical phenomena. The average values of the mechanical bulk strains for different magnetization states are obtained at the grain scale utilizing Boltzmann functions and a self-consistent homogenization scheme. A Taylor series expansion of the Gibbs function concerning the field variables and an adapted Jiles-Atherton model are used to construct the hysteresis coupled constitutive relations at the macroscopic scale. The results associated with the experiments show that the established model can reasonably predict the magnetostrictive response under different external mixed stimuli. It can provide theoretical guidance for the precise control of nonlinear vibrations and the optimal design of the rotating giant magnetostrictive transducers at both microscopic and macroscopic multiple scales.
本文基于畴旋转机制,从微观唯象学方法出发,提出了一种多级三维本构模型,该模型是一种考虑弹性 - 非弹性应变与磁滞相互作用的全耦合自洽均匀化方案。考虑磁畴、晶粒、多晶复合体以及宏观唯象学之间的相互作用,我们预测了Terfenol - D在不同类型外力载荷和磁激励下,在涉及磁、弹性、热和机械现象多场耦合的各种热环境中的非线性磁致伸缩响应。利用玻尔兹曼函数和自洽均匀化方案,在晶粒尺度上获得了不同磁化状态下机械体积应变的平均值。通过对吉布斯函数关于场变量的泰勒级数展开以及采用改进的Jiles - Atherton模型,在宏观尺度上构建了磁滞耦合本构关系。与实验相关的结果表明,所建立的模型能够合理地预测不同外部混合刺激下的磁致伸缩响应。它可以为微观和宏观多尺度下非线性振动的精确控制以及旋转式超磁致伸缩换能器的优化设计提供理论指导。