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An accurate method for the determination of complex coefficients of single crystal piezoelectric resonators I: Theory

机译:确定单晶压电谐振器复系数的一种精确方法I:理论

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摘要

This paper presents the theoretical derivation for a method of accurately determining the complex coefficients of single crystal piezoelectric materials. The vibration equations are analytically solved for a piezoelectric plate and a piezoelectric thin rod in an arbitrary crystallographic orientation. The solutions provide the distributions of the stresses and the vibration velocities inside the sample and the electrical impedance between the electrodes. Based on the analysis of the solutions, the complex dielectric, elastic, and piezoelectric coefficients are determined from the impedance or admittance measurements near the resonance frequencies. The measurement for LiNbO3 single crystals is used as an example to demonstrate the experiment and calculation procedures and to indicate the comparisons with previous methods.
机译:本文提出了一种精确确定单晶压电材料复系数的方法的理论推导。对于压电板和压电细棒在任意晶体学方向上的振动方程,都可以通过解析求解。这些解决方案提供了样品内部的应力和振动速度以及电极之间的电阻抗的分布。根据解决方案的分析,可以根据谐振频率附近的阻抗或导纳测量结果确定复数介电系数,弹性系数和压电系数。以LiNbO3单晶的测量为例,演示了实验和计算程序,并指出了与以前方法的比较。

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