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Anisotropy of the magnetoelectric effect in tri-layered composites based on single-crystalline piezoelectrics

机译:基于单晶压电的三层复合材料中磁电效应的各向异性

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A numerical and experimental study of the anisotropy of the magnetoelectric (ME) response in tri-layered composites based on single-crystalline piezoelectrics has been carried out. Quasi-static and resonant direct ME measurements were performed on Metglas/Piezoelectric/Metglas tri-layered structures featuring thin foils of the magnetostrictive Metglas alloy and differently oriented piezocrystals of LiNbO3 (LNO) and GaPO4 (GPO). The transversal ME effects were found to be strongly dependent on the direction of the applied in-plane magnetic bias fields as well as the orientation of the crystals. Multiple peaks of the ME response were observed corresponding to different contour resonance modes of the piezocrystals. The largest ME coefficient of up to 249 V/(cm.Oe) was observed for a composite with a 41 degrees Y-cut LNO crystal at 323.1 kHz. In summary, we have shown that crystalline lead-free LNO and GPO can exhibit relatively large anisotropic ME effects in multilayers. The relations between the directional ME coupling and the material constants of the differently oriented piezocrystals were pinpointed. The precise control of this orientation should therefore allow one to engineer almost any desired quasi-static and resonant ME anisotropic properties for any specific application. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了基于单晶压电材料的三层复合材料中磁电(ME)响应各向异性的数值和实验研究。在Metglas /压电/ Metglas三层结构上进行准静态和共振直接ME测量,该结构具有磁致伸缩Metglas合金的薄箔以及取向不同的LiNbO3(LNO)和GaPO4(GPO)的压电晶体。发现横向ME效应在很大程度上取决于所施加的面内磁偏置场的方向以及晶体的取向。观察到ME响应的多个峰对应于压电晶体的不同轮廓共振模式。对于在323.1 kHz时具有41度Y切LNO晶体的复合材料,观察到最大的ME系数高达249 V /(cm.Oe)。总而言之,我们已经表明,结晶的无铅LNO和GPO可以在多层材料中表现出较大的各向异性ME效应。指出了定向ME耦合与不同取向的压电晶体的材料常数之间的关系。因此,对这种取向的精确控制应允许工程师针对任何特定应用设计几乎任何所需的准静态和共振ME各向异性特性。 (C)2015 Elsevier Ltd.保留所有权利。

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