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Shear horizontal (SH) waves propagating in piezoelectric-piezomagnetic bilayer system with an imperfect interface

机译:具有不完善界面的压电-压电双层系统中传播的剪切水平(SH)波

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摘要

This work considers the propagation of shear horizontal (SH) waves in a bilayer system consisting of a piezoelectric (PE) layer and a piezomagnetic (PM) substrate. The interface between the PE layer and the PM substrate is imperfectly bonded. The surfaces of the bilayer system are free of traction, electrically shorted or open and magnetically open or shorted. The exact dispersion equations are derived. The numerical examples are given to illustrate the effects of the electromagnetic boundary conditions, the imperfect interface, the different PE layers and the thickness ratio on the dispersion behaviors. It is found that (a) the electrical boundary conditions dominate the propagation characteristics of SH waves; (b) the imperfect bonding lowers the phase velocities; (c) the thickness ratio and the properties of PE layers have a significant effect on the dispersion behaviors. The obtained results provide a predictable and theoretical basis for applications of PE-PM composites to acoustic wave devices.
机译:这项工作考虑了在由压电(PE)层和压电(PM)衬底组成的双层系统中水平剪切(SH)波的传播。 PE层和PM基板之间的界面粘合不良。双层系统的表面无牵引力,无电短路或开路,无磁开路或短路。得出精确的色散方程。数值例子说明了电磁边界条件,不完善的界面,不同的PE层和厚度比对色散行为的影响。发现:(a)电边界条件主导着SH波的传播特性; (b)粘结不完善会降低相速度; (c)PE层的厚度比和性能对分散行为有重大影响。所得结果为将PE-PM复合材料应用于声波器件提供了可预测的理论基础。

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