Investigation of Coupling Effects in Rectangular Quartz Resonators with Partial Electrodes

Nian Li, Z. Qian, Bin Wang
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Abstract

Mindlin’s two-dimensional theory has been derived and applied on researches of quartz resonators for many years. However, in most of these works focuses were placed on vibrations varying only in two directions including thickness direction, while the effect of another direction like length or width direction was normally neglected. Besides, researchers often model quartz resonators as fully electroded plates because of the resultant simplicity. Since a real device is finite in all directions and only centrally electroded, results obtained in those papers can’t offer quantitative information of vibrations with enough accuracy. In this paper, a theoretical analysis of a rectangular trapped-energy resonator of AT-cut quartz is studied using 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 energy trapping and coupling phenomenon and are helpful for thorough and accurate understanding of quartz resonators’ vibrations.
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部分电极矩形石英谐振腔的耦合效应研究
Mindlin的二维理论已被推导并应用于石英谐振器的研究多年。然而,在这些工作中,大多数只关注两个方向的振动变化,包括厚度方向,而另一个方向如长度或宽度方向的影响通常被忽略。此外,研究人员经常将石英谐振器建模为完全带电的板,因为这样简单。由于一个真实的装置在所有方向上都是有限的,而且只在中心电极,这些论文中获得的结果不能提供足够精确的振动定量信息。本文利用里兹方法结合明德林一阶方程的变分公式,对at切割石英的矩形困能谐振腔进行了理论分析。考虑了厚度-剪切模态、厚度-扭转模态和弯曲模态之间的模态耦合,得到了全方向有限的实尺度困能谐振器的频谱和模态振型。结果表明,石英谐振腔中存在能量捕获和耦合现象,有助于全面、准确地理解谐振腔的振动。
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