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Analysis of a composite piezoelectric circular plate with initial stresses for MEMS

机译:具有初始应力的复合压电圆形板对MEMS的初始应力分析

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The paper presents a mechanical analysis of the multi-layer circular composite plate For MEMS devices. Each layer of the plate is assumed to have different radius, material properties and initial stresses. Governing equations for the composite plate are derived based on the classical laminated plate theory, and analytical solutions have been developed for static deflection of the initially stressed plate due to transverse pressure loading as well as for a given electric field in the piezoelectric layer. A nonlinear finite element analysis of the plate is also performed. The analytical results match the FE results for the range of parameters used in the microphone design. The analytical model will be useful in the design and optimization of MEMS devices containing circular piezoelectric composite plates and diaphragms.
机译:本文介绍了MEMS器件的多层圆形复合板的机械分析。假设每个层的板具有不同的半径,材料特性和初始应力。基于经典层压板理论导出复合板的控制方程,并且已经开发了由于横向压力负载和压电层中的给定电场而静音偏转的分析解决方案。还执行板的非线性有限元分析。分析结果与麦克风设计中使用的参数范围匹配的FE结果匹配。分析模型将可用于含有圆形压电复合板和隔膜的MEMS器件的设计和优化。

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