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Analytical modeling of piezoelectric ceramic transducers based on coupled vibration analysis with application to rectangular thickness poled plates

机译:基于耦合振动分析的压电陶瓷换能器解析模型及其在矩形厚度极化板上的应用

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摘要

The energy method for analyzing piezoelectric ceramic transducers [B. S. Aronov, J. Acoust. Soc. Am. 117, 210-220 (2005)] is applied to the treatment of transducers with mechanical systems that can be considered as two-dimensional. Analysis is made following the general outline of the theory of coupled vibration in two degrees-of-freedom systems and its extension in calculating the resonance frequencies of elastic bodies, as suggested by Giebe and Blechschmidt [Ann. Physik, Ser. 5 18, 417-485 (1933)]. The approach to the problem is illustrated with examples of piezoceramic rectangular thickness poled plates. The resonance frequencies and effective coupling coefficients are presented as functions of the plates' aspect ratio.
机译:用于分析压电陶瓷换能器的能量方法[B. S. Aronov,J。Acoust。 Soc。上午。 117,210-220(2005)]被应用于具有可以被认为是二维的机械系统的换能器的处理。遵循Giebe和Blechschmidt的建议,按照两个自由度系统中的耦合振动理论的概述以及其在计算弹性体共振频率方面的扩展进行了分析。 Physik,Ser。 5 18,417-485(1933)]。以压电陶瓷矩形厚度极化板为例说明了解决该问题的方法。共振频率和有效耦合系数是板的纵横比的函数。

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