Gap wave propagating in layered piezoelectric material structures with initial stress

Jianke Du, Xiaoying Jin, Ji Wang
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Abstract

In this study, shear horizontal gap waves propagating in layered piezoelectric structures with initial stress is investigated analytically. The boundary conditions imply that the displacement, shear stress, electric potential, and electric displacement are continuous across the interface between the layer and the substrate. The electrically open conditions at the interface between the air and the piezoelectric layer are applied to solve the problem. The phase velocity equation can be obtained and the velocity is numerically calculated and discussed in detail for different initial stresses in the piezoelectric layer. We find that the initial stress has remarkable effect on the phase velocity of the gap waves.
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具有初始应力的层状压电材料结构中的间隙波传播
本文对具有初始应力的层状压电结构中的剪切水平间隙波传播进行了分析研究。边界条件意味着位移、剪切应力、电势和电位移在层与基底之间的界面上是连续的。利用空气与压电层交界面处的电开条件来解决这一问题。得到了相速度方程,并对不同初始应力下的相速度进行了数值计算和详细讨论。我们发现初始应力对间隙波的相速度有显著的影响。
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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