Bulk Waves in the Infinite Electric-Magnetic-Elastic Plate with Mixed Boundary Conditions

Genquan Xie, Xingpeng Song, Xiao Xiao
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Abstract

A dynamic solution is presented for the propagation of waves in an electric-magneto-elastic plate composed of piezoelectric, piezomagnetic materials and elastic matrix. The electric-magneto-elastic plate is polarized along the thickness direction. The generalized displacements are expressed as the sum of the gradient of a scalar (dilatation wave) and the curl of a vector (shear wave). With the help of dynamic equilibrium equations and geometric equations, we can obtain dynamic equations of the dilatation wave and the shear wave. The conclusion that the types of the dilatation waves and the shear waves remain unchanged after being reflected by the boundary can be obtained through the analysis of these kinetic equations. The dispersion properties and phase velocity surface of the dilatation and shear wave can be obtained by solutions of dynamic equilibrium equations. Influences of the piezoelectric and piezomagnetic parameters on wave characteristics are discussed.
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混合边界条件下无限电-磁-弹板中的体波
给出了波在由压电、压磁材料和弹性矩阵组成的电磁弹性板中的传播动力学解。电磁弹性板沿厚度方向呈极化。广义位移表示为标量(膨胀波)的梯度和矢量(横波)的旋度之和。利用动力平衡方程和几何方程,可以得到膨胀波和横波的动力方程。通过对这些动力学方程的分析,可以得出膨胀波和剪切波在被边界反射后类型保持不变的结论。通过动力学平衡方程的求解,可以得到膨胀波和横波的频散特性和相速度面。讨论了压电和压磁参数对波特性的影响。
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