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Magnetoelectric coupling of multiferroic composites under combined magnetic and mechanical loadings

机译:磁和机械载荷作用下多铁复合材料的磁电耦合

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摘要

Multiferroic composites are of particular interest because of their high magnetoelectric (ME) coupling at room temperature. In multiferroic composites, ME coupling is a strain mediated effect achieved via the interfaces between the magnetic and electrical subsystems through elastic deformation. In this paper, ME coupling of laminate composites is investigated under combined magnetic and mechanical loadings. Three types of laminate composites are used, with piezoelectric phase layers of PZT plates and the magnetic phase layers comprising Terfenol-D, Ni and Metglas, respectively. As the applied compressive stress increases, the ME coefficient (αME) decreases monotonically for Terfenol-D/PZT/Terfenol-D and Metglas/PZT/Metglas, while it slightly increases for Ni/PZT/Ni laminate. To reveal the influence of the magnetic layers on the ME coupling, measurements of magnetostriction under combined magnetic and compressive loadings are carried out for Terfenol-D, Ni and Metglas. Based on the equivalent circuit model, the peak values of the ME coefficient for different compressive stresses are predicted for the laminate composites; these agree well with the experimental data. It is suggested that the compressive stress-induced strain, as well as the magnetostrictive response of the magnetic material, mainly contribute to the mechanical-magnetic- electrical coupling behavior of the multiferroic composites.
机译:多铁性复合材料特别受关注,因为它们在室温下具有高磁电(ME)耦合。在多铁性复合材料中,ME耦合是通过磁变形和电子系统之间的界面通过弹性变形实现的应变介导效应。在本文中,研究了复合材料在磁和机械载荷作用下的ME耦合。使用三种类型的层压复合材料,分别具有PZT板的压电相层和包含Terfenol-D,Ni和Metglas的磁相层。随着施加的压缩应力的增加,Terfenol-D / PZT / Terfenol-D和Metglas / PZT / Metglas的ME系数(αME)单调降低,而Ni / PZT / Ni层压板的ME系数略有增加。为了揭示磁性层对ME耦合的影响,对Terfenol-D,Ni和Metglas进行了磁和压缩载荷联合作用下的磁致伸缩测量。基于等效电路模型,可以预测层压复合材料在不同压缩应力下的ME系数的峰值。这些与实验数据非常吻合。有人提出,压缩应力引起的应变以及磁性材料的磁致伸缩响应,主要有助于多铁复合材料的机械-电磁-电耦合行为。

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