圆形石英晶体板的厚度-剪切振动分析

C. Hao, R. Wu, Bin Huang, A. Zhang, T. Ma, Jianke Du, Dan Wu, Ji Wang
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引用次数: 0

摘要

圆形石英晶体谐振器广泛用于频率控制和检测功能,石英晶体板以厚度-剪切模式振动。自然,圆形石英晶体板的振动在谐振器的设计和优化中具有重要的意义。我们系统地推导了圆板厚度-剪切振动的Mindlin板方程。我们进一步证明了圆形板的厚度-剪切振动在频散关系上与矩形板一致。通过截断厚度-剪切振动的无限二维方程,我们得到了一组只有选定振动模式的方程。通过求解厚度-剪切振动频率和模态振型的耦合方程,我们可以利用这些结果来优化板参数的选择,以提高谐振器的性能。在石英晶体振动分析中,解析方程和求解过程是非常重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An analysis of thickness-shear vibrations of circular quartz crystal plates
Quartz crystal resonators of circular type are widely used for frequency control and detection functions with the quartz crystal plate vibrating at the thickness-shear mode. Naturally, vibrations of circular quartz crystal plates are of great interests in the design and optimization of resonators. We have derived the Mindlin plate equations for the thickness-shear vibrations of circular plates in a systematic manner. We have further proved that the thickness-shear vibrations of circular plates are consistent with rectangular plates in dispersion relations. By truncating the infinite two-dimensional equations for the thickness-shear vibrations, we obtained a set of equations with only selected vibration modes. Solving the coupled equations for thickness-shear vibration frequencies and mode shapes, we can use these results for the optimal selection of plate parameters to improve performance of resonators. The analytical equations and solution procedure are important in the analysis of quartz crystal vibrations.
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