用Mindlin和Lee板理论分析sc切割石英晶体板的振动

Ji Wang, Wen-jun Wang, Gui-jia Chen, Jianke Du, T. Ma, Dejin Huang
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引用次数: 1

摘要

sc型石英晶体谐振器因其具有较高的振动频率而被广泛应用于滤波器和传感器的核心元件。作为设计过程的一部分,需要对sc切割石英晶体谐振器进行分析,并且已经证明Mindlin和Lee板方程可以用于板在高阶谐波模式下的振动分析,并准确预测截止频率附近的频率和色散关系。我们利用一阶Mindlin和Lee板方程分析了矩形sc切割石英晶体板的厚度剪切自由振动。建立了计算色散关系、频谱、选择振动模式和确定sc切割石英晶体毛坯最佳长度的程序。如此详细的研究连续在thickness-shear泛音振动模式将提供重要的设计指南SC-cut石英晶体谐振器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration analysis of SC-cut quartz crystal plates with the Mindlin and Lee plate theories
SC-cut quartz crystal resonators have been widely utilized in many applications as core elements of filters and sensors for their higher vibration frequencies. An analysis of SC-cut quartz crystal resonators is required as part of the design process and it has been proven that the Mindlin and Lee plate equations can be used for the vibration analysis of plates at the higher-order overtone modes with accurate prediction of frequency and dispersion relations in the vicinity of cut-off frequencies. We have utilized the first-order Mindlin and Lee plate equations for the analysis of thickness-shear free vibrations of a rectangular SC-cut quartz crystal plate. The procedure has been established for the calculation of dispersion relations, frequency spectra, selected vibration modes, and determination of the optimal length of SC-cut quartz crystal blank. Such detailed studies on the successive overtone vibrations at the thickness-shear mode will provide important design guidelines for SC-cut quartz crystal resonators.
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