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An analytical solution for static analysis of a simply supported moderately thick sandwich piezoelectric plate

机译:简支中厚夹层压电板静态分析的解析解决方案

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摘要

This paper presents a theoretic model of a smart structure, a transversely isotropic piezoelectric thick square plate constructed with three laminas, piezoelectric-elastic-piezoelectric layer, by adopting the first order shear deformation plate theory and piezoelectric theory. This model assumes that the transverse displacements through thickness are linear, and the in-plane displacements in the mid-plane of the plate are not taken to be account. By using Fourier's series expansion, an exact Navier typed analytical solution for deflection and electric potential of the simply supported smart plate is obtained. The electric boundary conditions are being grounded along four vertical edges. The external voltage and non-external voltage applied on the surfaces of piezoelectric layers are all considered. The convergence of the present approach is carefully studied. Comparison studies are also made for verifying the accuracy and the applicability of the present method. Then some new results of the electric potentials and displacements are provided. Numerical results show that the electrostatic voltage is approximately linear in the thickness direction, while parabolic in the plate in-plane directions, for both the deflection and the electric voltage. These results are very useful for distributed sensing and finite element verification.
机译:本文采用一阶剪切变形板理论和压电理论,提出了一种智能结构的理论模型,即一个由三层压电压电弹性压电层构成的横观各向同性的压电厚方板。该模型假设整个厚度的横向位移是线性的,并且不考虑板中平面的平面内位移。通过使用傅立叶级数展开式,可以得到用于简单支撑的智能板的挠度和电势的精确Navier型解析解。电边界条件沿四个垂直边缘接地。都考虑了施加在压电层表面上的外部电压和非外部电压。仔细研究了本方法的收敛性。还进行了比较研究,以验证本方法的准确性和适用性。然后提供了一些新的电位和位移结果。数值结果表明,对于挠度和电压,静电电压在厚度方向上近似呈线性,而在板平面内方向呈抛物线形。这些结果对于分布式传感和有限元验证非常有用。

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