A nonlinear finite element analysis of high frequency vibrations of quartz crystal plates

Ji Wang, Yang-yang Chen, R. Wu, Li-hong Wang, Huimin Jing, Jianke Du, Yuantai Hu, Guo-qing Li
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引用次数: 1

Abstract

We formulate the first-order nonlinear Mindlin plate equations in the finite element method to study the high frequency thickness-shear vibrations of quartz crystal plates. Iterative algorisms are utilized to solve the resulted nonlinear eigensystems. High performance computational software packages are integrated into our nonlinear finite element program to speed up the extremely large scale computations. We considered both kinematic and material nonlinearities in vibrations analyses, and obtained the frequency-amplitude relations. We also compared distributions of the thickness-shear deformation at different amplitudes. This nonlinear finite element software can be further improved to study nonlinear phenomena arising from miniaturized quartz crystal resonators.
石英晶体板高频振动的非线性有限元分析
本文用有限元法建立了一阶非线性Mindlin板方程,研究了石英晶体板的高频厚剪振动。利用迭代算法求解得到的非线性特征系统。我们的非线性有限元程序集成了高性能的计算软件包,以加快超大规模的计算。在振动分析中考虑了运动非线性和材料非线性,得到了频率-振幅关系。我们还比较了不同振幅下厚度剪切变形的分布。该非线性有限元软件可以进一步改进,用于研究微型化石英晶体谐振器产生的非线性现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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