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基于叠加法的压电陶瓷圆柱体精确耦合振动分析

Accurate coupled vibration analysis of a piezoelectric ceramic cylinder by the superposition method.

作者信息

Ding Wenxiang, Bavencoffe Maxime, Lethiecq Marc

机构信息

Greman UMR 7347 CNRS, Université de Tours, INSA Centre Val de Loire, 3 Rue de la Chocolaterie, Blois, France.

出版信息

Ultrasonics. 2021 Aug;115:106474. doi: 10.1016/j.ultras.2021.106474. Epub 2021 May 28.

Abstract

The radial and thickness extensional vibration modes in piezoelectric cylinders are always inevitably coupled due to the finite dimension, Poisson's ratio, and piezoelectric effect. In this paper, an analytical model based on the superposition method is developed to obtain the coupled dynamic response of a piezoelectric cylinder under an applied voltage. The problem can be described mathematically by three partial differential equations with mixed boundary conditions in the cylindrical coordinates system. To solve this, the problem is decomposed first into two building block - vibrations in radial and thickness directions. In each building block, the expressions of displacements and electric potential are assumed and then the induced dynamic responses, such as in-plane stress and electric displacements, are calculated. Finally, the vibration responses of the two building blocks are superimposed to satisfy the mixed boundary conditions using Fourier and Fourier-Bessel series expansions. Electrical impedance of a typical piezoelectric disk and frequency spectrum of piezoelectric cylinders of different diameter-to-thickness ratios are calculated by the present analytical method as well as by finite element method. Comparison shows an excellent agreement. This analytical model can be applied to material characterization and the design and the optimization of the active elements of piezoelectric devices.

摘要

由于有限尺寸、泊松比和压电效应,压电圆柱体中的径向和厚度方向的拉伸振动模式总是不可避免地相互耦合。本文基于叠加法建立了一个解析模型,以获得施加电压下压电圆柱体的耦合动态响应。该问题在柱坐标系中可用三个具有混合边界条件的偏微分方程进行数学描述。为了解决这个问题,首先将其分解为两个基本部分——径向和厚度方向的振动。在每个基本部分中,假设位移和电势的表达式,然后计算诱导的动态响应,如面内应力和电位移。最后,利用傅里叶和傅里叶 - 贝塞尔级数展开叠加两个基本部分的振动响应,以满足混合边界条件。采用本文的解析方法以及有限元方法计算了典型压电圆盘的电阻抗和不同径厚比压电圆柱体的频谱。比较结果显示两者吻合良好。该解析模型可应用于材料表征以及压电器件有源元件的设计与优化。

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