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The frequency-temperature analysis equations of piezoelectric plates with Lee plate theory

机译:李板理论的压电板频率-温度分析方程

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摘要

Frequency-temperature analysis theory of crystal plates based on the incremental field theory (IFT) and the Mindlin plate theory have been widely used in the vibration analysis of crystal resonators subject to temperature change. As one of the two major plate theories for the resonator analysis, the Lee plate theory based on the trigonometric series expansion of displacements has been extensively used for both analytical and numerical analyses of quartz resonators, and efforts have also been made in correcting and perfecting the theory for much broader applications. In this paper, the earlier frequency-temperature analysis equations based on the IFT is further extended to the trigonometric series expansion in a systematic manner. By incorporating the frequency-temperature analysis into the Lee plate theory, the complete analysis of crystal resonators can be made in a consistent way. The thickness-shear and flexural vibration equations have been compared with the Mindlin plate theory to demonstrate the similarity and consistency.
机译:基于增量场理论(IFT)和Mindlin板理论的晶体板频率-温度分析理论已广泛用于温度变化引起的晶体谐振器的振动分析中。作为谐振器分析的两个主要板理论之一,基于位移的三角级数展开的Lee板理论已被广泛用于石英谐振器的分析和数值分析,并且在校正和完善压电谐振器方面也做出了努力。理论的广泛应用。在本文中,较早的基于IFT的频率-温度分析方程式被系统地扩展到了三角级数展开。通过将频率-温度分析纳入Lee板理论,可以以一致的方式对晶体谐振器进行完整的分析。厚度-剪切和弯曲振动方程与Mindlin板理论进行了比较,以证明其相似性和一致性。

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