Forced vibration analysis of bi-axially pre-stressed piezoelectric plates under a harmonic point load

AHMET DAŞDEMIR
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Abstract

In this paper, a discussion on the forced vibration of a transversely isotropic piezoelectric plate with finite dimensions subjected to a time-harmonic force resting on a rigid foundation is carried out. Here, we assume that the plate is poled along the perpendicular surface and bi-axial initially stressed in their reference configuration. The three-dimensional linearized theory of electro-elastic waves in initially stressed bodies (TLTEEWISB) is applied to the initially-stressed piezoelectric plate. A general formulation of the governing equations of motions is provided according to the piece-wise homogeneous body model, and then the three-dimensional finite element modeling (3D-FEM) is developed as a solution procedure in terms of weak formulation and virtual work principle. The objective of this paper is to present the results regarding the frequency response of the piezoelectric rectangular plate and the influence of the initial stress factor on the system. Numerical examples imply that while the increasing aspect ratio of the plate prevents the resonance mode of the dynamic force, the increasing thickness ratio exceeds this mode. Further, it is also demonstrated and discussed in detail that the initial stress state has a considerable influence on this mode.

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谐波点载荷下双轴预应力压电板的受迫振动分析
本文讨论了有限尺寸横向各向同性压电板在刚性地基上受到时谐力作用时的受迫振动。在此,我们假定压电板沿垂直表面极化,并以其参考构型双轴初始受力。初应力体电弹性波三维线性化理论(TLTEEWISB)被应用于初应力压电板。根据片状均质体模型提供了运动控制方程的一般公式,然后根据弱公式和虚功原理开发了三维有限元建模(3D-FEM)作为求解程序。本文旨在介绍压电矩形板的频率响应结果以及初始应力因子对系统的影响。数值示例表明,虽然板的纵横比增大会阻止动态力的共振模式,但厚度比增大会超过该模式。此外,还详细论证和讨论了初始应力状态对该模式的重大影响。
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