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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >On the accuracy of Mindlin plate predictions for the frequency-temperature behavior of resonant modes in AT- and SC-cut quartz plates
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On the accuracy of Mindlin plate predictions for the frequency-temperature behavior of resonant modes in AT- and SC-cut quartz plates

机译:关于Mindlin平板预测AT和SC切割石英平板共振模式的频率-温度行为的准确性

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摘要

The frequency spectra of resonant modes in AT- and SC-cut quartz plates and their frequency-temperature behavior were studied using Mindlin first- and third-order plate equations. Both straight-crested wave solutions and two-dimensional plate solutions were studied. The first-order Mindlin plate theory with shear correction factors was previously found to yield inaccurate frequency spectra of the modes in the vicinity of the fundamental thickness-shear frequency. The third-order Mindlin plate equations without correction factors, on the other hand, predict well the frequency spectrum in the same vicinity. In general, the frequency-temperature curves of the fundamental thickness-shear obtained from the first-order Mindlin plate theory are sufficiently different from those of the third-order Mindlin plate theory that they raise concerns. The least accurately predicted mode of vibration is the flexure mode, which results in discrepancies in its frequency-temperature behavior. The accuracy of other modes of vibrations depends on the degree of couplings with the flexure mode. Mindlin first-order plate theory with only the shear correction factors is not sufficiently accurate for high frequency crystal vibrations at the fundamental thickness-shear frequency. Comparison with measured resonant frequencies and frequency-temperature results on an AT-cut quartz plate shows that the third-order plate theory is more accurate than the first-order plate theory; this is especially true for the technically important fundamental thickness shear mode in the AT-cut quartz plate.
机译:利用Mindlin的一阶和三阶板式方程研究了AT和SC切割石英板中共振模的频谱及其频率-温度行为。研究了直波解和二维板解。先前发现具有剪切校正因子的一阶Mindlin板理论在基本厚度剪切频率附近产生的模态频谱不准确。另一方面,没有校正因子的三阶Mindlin板方程很好地预测了同一附近的频谱。通常,从一阶Mindlin板理论获得的基本厚度剪切的频率-温度曲线与三阶Mindlin板理论的频率-温度曲线有很大差异,这引起了人们的关注。振动的最不准确的预测模式是弯曲模式,这会导致其频率-温度行为出现差异。其他振动模式的准确性取决于与挠曲模式的耦合程度。仅具有剪切校正因子的Mindlin一阶板理论对于基本厚度剪切频率下的高频晶体振动而言不够准确。与在AT切割石英板上测得的谐振频率和频率-温度结果的比较表明,三阶板理论比一阶板理论更准确;对于AT切割石英板中技术上重要的基本厚度剪切模式,尤其如此。

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