The correction factors of mindlin plate theory with and without electrodes for SC-cut quartz crystal plates

Ji Wang, Gui-jia Chen, Yang-yang Chen, R. Wu, Jianke Du, T. Ma, Dejin Huang
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引用次数: 7

Abstract

Mindlin plate theory was first developed to provide accurate solutions for vibrations of thickness-shear mode, which has a much higher frequency than usual flexure vibrations. It has been widely used in the analysis of high frequency vibrations of quartz crystal plates, which are the core of resonators. The vibration frequency solutions obtained with Mindlin plate theory are proven much closer to the exact solutions. However, due to the truncation and approximation, the plate equations need to be corrected, as compared with the three-dimensional elasticity solutions. This has been done for the high-order Mindlin plate theory with and without electrodes for the AT-cut quartz crystal plates, and correction factors have been obtained though both natural and symmetric procedures. The correction factors could be used in the dispersion relationship and frequency spectrum in the analytical solutions, while the symmetric correction factors can be used in the finite element method implementation. Both correction schemes can provide improved and accurate results in the analysis of quartz crystal resonators. The electrodes are considered though its inertia effect as mass ratio known in resonator analysis.
有电极和无电极的mindlin平板理论对sc切割石英晶体板的修正系数
Mindlin板理论最初是为厚度-剪切振动提供精确的解,这种振动比通常的弯曲振动频率高得多。它已广泛应用于谐振器核心石英晶体板的高频振动分析。用Mindlin板理论得到的振动频率解更接近于精确解。然而,由于截尾和近似,与三维弹性解相比,板方程需要进行修正。这已经完成了高阶Mindlin板理论有电极和没有电极的at切割石英晶体板,并通过自然和对称程序获得了校正因子。校正因子可用于解析解中的色散关系和频谱,而对称校正因子可用于有限元法的实现。这两种校正方案都可以在石英晶体谐振器的分析中提供改进和准确的结果。在谐振器分析中,电极的惯性效应被认为是质量比。
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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