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Nonlinear modeling of bending-mode magnetoelectric coupling in asymmetric composite structures with magnetization-graded ferromagnetic materials

机译:磁化分级铁磁材料在不对称复合结构中弯曲模式磁电联轴器的非线性建模

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摘要

The bending-mode magnetoelectric (ME) coupling in the asymmetric laminate composite with a magnetization-graded ferromagnetic material has been investigated in this paper. Based on the nonlinear constitutive relationships of the magnetostrictive material, the dynamic piezomagnetic models have been presented for magnetostrictive materials after considering the remanence, demagnetization, and flux concentration effects. In addition, the bending-mode resonant ME coupling model is developed based on the proposed dynamic piezomagnetic model, the motion equation of the ME composite, and the ME equivalent circuit method. The composite structures FeCuNbSiB/Ni/PZT with negative magnetostrictive Ni and FeCuNbSiB/FeNi/PZT with positive magnetostrictive FeNi have been used to confirm the validity and reliability of the theoretical model. The theoretical results show that the bending-resonant ME coefficients reasonably agree with the experimental results. This theoretical model is of importance for understanding the bending-mode ME response of the asymmetric structure with magnetization-graded ferromagnetic materials and designing the ME devices.
机译:本文研究了弯曲模式磁电(ME)在非对称层压复合材料中的耦合,并在本文中研究了磁化分级铁磁性材料。基于磁致伸缩材料的非线性本构关系,在考虑剩磁,去磁和助熔剂浓度效应之后,已经在磁致伸缩材料呈现动态压电磁模型。另外,弯曲模式谐振ME耦合模型是基于所提出的动态压电磁模型,ME复合的运动方程和ME等效电路方法开发。具有负磁致伸缩Ni和Fecunbsib / Feni / PZT的复合结构Fecunbsib / Ni / PZT用于确认理论模型的有效性和可靠性。理论结果表明,弯曲共振ME系数与实验结果合理达成。该理论模型对于了解不对称结构与磁化分级铁磁材料的弯曲模式ME响应并设计ME器件。

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