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A finite element model for a bi-layered piezoelectric plate-strip with initial stresses under a time-harmonic force

机译:时谐力作用下具有初始应力的双层压电板带有限元模型

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摘要

The novelty of this study is presenting the analytical approach to investigate the dynamic response and the forced vibration by a time-harmonic force of a bi-layered piezoelectric plate-strip with initial stresses, resting on a rigid foundation. Material properties are varied perpendicular to the free surface of the plate-strip according to a simple power-law distribution. Firstly, the nonlinear mechanical equations of motion are linearized within the scope of the three-dimensional linearized theory of elastic waves in initially stressed bodies (TLTEWISB). Furthermore, using the piezoelectricity material properties, linear electrical governing equations are derived. Next, the problem under consideration is solved by the finite element method (FEM) to determine, especially the frequency response of the body. The approach is verified by the previous results in the literature. In numerical results, the influences of the initial stress, the height ratio of the layers, thickness ratio, and dimensionless frequency parameters on the dynamic response and the forced vibration of the bi-layered piezoelectric plate-strip are presented and discussed in detail.
机译:本研究的新颖之处在于提出了一种分析方法,用于研究具有初始应力的双层压电板带的动态响应和时谐力的强迫振动,该方法位于刚性基础上。根据简单的幂律分布,材料属性在垂直于板带的自由表面上变化。首先,在初始应力体弹性波的三维线性化理论(TLTEWISB)范围内对非线性运动方程进行线性化;此外,利用压电材料的特性,推导了线性电控方程。接下来,通过有限元法(FEM)解决所考虑的问题,以确定,特别是物体的频率响应。该方法已被文献中的先前结果所验证。在数值计算中,详细阐述了初始应力、层高比、厚度比和无量纲频率参数对双层压电板带材动态响应和受迫振动的影响。

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