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Coupling Vibration Analysis of Trapped-Energy Rectangular Quartz Resonators by Variational Formulation of Mindlin’s Theory

机译:思态化理论变分制的捕获能量矩形石英谐振器的振动分析

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摘要

Mindlin’s two-dimensional theory has been derived and applied to research on quartz resonators for a long time. However, most works have focused on vibrations varying only in two directions, including thickness direction, while the effect of other directions like the length or width direction is normally neglected. Besides, researchers often model quartz resonators as fully electroded plates because of the resulting simplicity. Since a real device is finite in all directions and is only centrally electroded, results obtained in such works cannot offer quantitative information on vibrations with enough accuracy. In this paper, a theoretical analysis of a rectangular trapped-energy resonator of AT-cut quartz is studied using the Ritz method, associated with the variational formulation of Mindlin’s first-order equations. Frequency spectra and mode shapes of a real-scaled trapped-energy resonator, which is finite in all directions, are obtained with the consideration of mode couplings among thickness-shear mode, thickness-twist mode, and flexural mode. Results show the existence of an energy-trapping and coupling phenomenon and are helpful for thorough and accurate understanding of quartz resonator vibrations. Detailed discussions on the effects of structural parameters on mode couplings and energy trapping are provided, and the results can helpfully guide the selection of aspect ratio, length/thickness ratio, and electrode inertia in device design.
机译:Mindlin的二维理论已经得出和应用于长期以来研究石英谐振器。然而,大多数作品都专注于仅在两个方向上变化的振动,包括厚度方向,而其他方向类似于长度或宽度方向的效果通常被忽略。此外,研究人员经常将石英谐振器模拟,因为产生的简单性是完全电极的板。由于真实装置在所有方向上有限并且仅是集中电极,因此在这种作品中获得的结果不能提供足够精度的振动的定量信息。在本文中,使用RITZ方法研究了矩形石英的矩形捕获能量谐振器的理论分析,与MEDENLE的一阶方程的变分制剂相关联。通过考虑厚度 - 剪切模式,厚度扭转模式和弯曲模式的模式耦合,获得实际缩放的截图 - 能量谐振器的频谱和模式形状,该截图 - 能量谐振器在所有方向上有限。结果表明存在能量捕获和耦合现象,并有助于对石英谐振器振动进行彻底和准确的理解。提供了关于结构参数对模式耦合和能量捕集的影响的详细讨论,结果可以帮助纵横比,长度/厚度比和装置设计中的电极惯性的选择。

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