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A new theory for electroded piezoelectric plates and its finite element application for the forced vibrations analysis of quartz crystal resonators

机译:电极压电板的新理论及其有限元在石英晶体谐振器强迫振动分析中的应用

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For crystal resonators, it is always desirable to calculate the electric properties accurately for application purposes. As an extension of the Mindlin plate theory based finite element analysis of crystal resonators, a new theory for the electroded plates is derived and the piezoelectrically forced vibrations are formulated and implemented in this paper in a manner similar to our previous work. The effect of the electrodes and the electric boundary conditions are taken into considerations through the modification of the higher-order plate equations by changing the expansion function of the electric potential for this particular problem. Through the conventional discretization of the new plate theory, the linear equations for the piezoelectric plate under thickness excitation are constructed and solved with efficient numerical computation techniques such as the sparse matrix handling. Numerical examples showing good predictions of the resonance frequency and capacitance ratio of electroded crystal plates of AT-cut quartz are presented with experimental data.
机译:对于晶体谐振器,总是希望精确地计算出电特性以用于应用目的。作为基于Mindlin板理论的晶体谐振器有限元分析的扩展,本文推导出了电极板的新理论,并以与我们之前的工作类似的方式制定并实施了压电强迫振动。通过针对该特定问题通过改变电势的扩展函数来修改高阶板方程,可以考虑电极的影响和电边界条件。通过新板理论的常规离散化,构造了厚度激励下压电板的线性方程,并通过有效的数值计算技术(如稀疏矩阵处理)进行求解。数值示例显示了对AT切割石英电极板的共振频率和电容比的良好预测,并提供了实验数据。

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