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Exact thickness-shear resonance frequency of electroded piezoelectric crystal plates
作者姓名:王骥  沈利君
作者单位:Mechanics and Material Sciences Research Center,School of Engineering,Ningbo University,Ningbo 315211,China,Mechanics and Material Sciences Research Center,School of Engineering,Ningbo University,Ningbo 315211,China
基金项目:Project supported by the Qianjiang River Fellow Fund of ZhejiangProvince, and Bureau of Personnel and Human Resource, Ningbo,China
摘    要:INTRODUCTION In quartz crystal resonator design, the mass effec of the electrodes must be considered to achieve ac curate prediction of the fundamental thickness-shea frequency, as analyzed and demonstrated b Bleustein and Tiersten (1968), which is considered t be the exact frequency solutions in making necessar comparisons with solutions from two-dimensiona plate equations and deriving the correspondent cor rection factors (Mindlin, 1972). When the crysta plate is relatively thick or the…

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收稿时间:2005-01-24
修稿时间:2005-04-17

Exact thickness-shear resonance frequency of electroded piezoelectric crystal plates
Wang Ji,Shen Li-jun.Exact thickness-shear resonance frequency of electroded piezoelectric crystal plates[J].Journal of Zhejiang University Science,2005,6(9):980-985.
Authors:Wang Ji  Shen Li-jun
Institution:(1) Mechanics and Material Sciences Research Center, School of Engineering, Ningbo University, 315211 Ningbo, China
Abstract:The determination of the precise thickness-shear frequency of electroded crystal plates has practical importance in quartz crystal resonator design and fabrication, especially when the high fundamental thickness-shear frequency has reduced the crystal plate thickness to such a degree that proper consideration of the effect of electrodes is very important. The electrodes effect as mass loading in the estimation of the resonance frequency has to be modified to consider the stiffness of electrodes, as the relative strength is increasingly noticeable. By following a known procedure in the determination of the thickness-shear frequency of an infinite AT-cut crystal plate, frequency equations of crystal plate without and with piezoelectric effect are obtained in terms of elastic constants and the electrode material density. After solving these equations for the usual design parameters of crystal resonators, the design process can be optimized to pinpoint the precise configuration to avoid time-consuming trial and reduction steps. Since these equations and solutions are presented for widely used materials and parameters, they can be easily integrated into the existing crystal resonator design and manufacturing processes.
Keywords:Thickness shear  Crystal plate  Piezoelectric
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