On Propagation of Rayleigh Type Surface Wave in a Micropolar Piezoelectric Medium

Baljeet Singh, R. Sindhu
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引用次数: 7

Abstract

In the present paper, the governing equations of a linear transversely isotropic micropolar piezoelectric medium are specialized for x-z plane after using symmetry relations in constitutive coefficients. These equations are solved for the general surface wave solutions in the medium. Following radiation conditions in the half-space, the particular solutions are obtained, which satisfy the appropriate boundary conditions at the stress-free surface of the half-space. A secular equation for Rayleigh type surface wave is obtained. An iteration method is applied to compute the non-dimensional wave speed of the Rayleigh surface wave for specific material parameters. The effects of piezoelectricity, non-dimensional frequency and non-dimensional material constant, charge free surface and electrically shorted surface are shown graphically on the wave speed of Rayleigh wave.
瑞利型表面波在微极压电介质中的传播研究
本文利用本构系数的对称关系,建立了线性横各向同性微极压电介质在x-z平面上的控制方程。求解了介质中一般表面波的解。根据半空间中的辐射条件,得到了在半空间无应力表面满足相应边界条件的特解。得到了瑞利型表面波的长期方程。采用迭代法计算了特定材料参数下瑞利面波的无量纲波速。用图形表示了压电性、无量纲频率和无量纲材料常数、自由电荷表面和电短表面对瑞利波波速的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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