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Modeling and electromechanical performance analysis of frequency-variable piezoelectric stack transducers

机译:变频压电叠堆换能器的建模与机电性能分析

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摘要

An exact analytical model of frequency-variable piezoelectric stack transducers is proposed, and their dynamic characteristics are studied in this article. Based on the linear piezoelasticity theory, the dynamic analytical solution is first derived, and then its correctness is validated by comparing it with the results of a special example in the previous literature and the ones of the experimental study. The effects of the tuning resistance and the layer number of the active element on the dynamic characteristics are discussed. Numerical results show that tuning the resistance and the layer number of the active element can enable the multi-frequency characteristics of the piezoelectric stack transducers. A proper layer number of the active element can minimize the short-circuited resonance frequency and the open-circuited anti-resonance frequency. These findings provide guidelines to design and optimize the piezoelectric stack transducers, which have promising potential in developing the multi-frequency Langevin transducers for some underwater sound and ultrasonic applications, such as ultrasonic cleaning, ultrasonic chemistry, and sonar radiators.
机译:提出了频率可变压电叠堆换能器的精确解析模型,并对其动态特性进行了研究。基于线性压电弹性理论,首先导出动力学解析解,然后将其与先前文献中的一个特殊示例的结果和实验研究的结果进行比较,以验证其正确性。讨论了调谐电阻和有源元件的层数对动态特性的影响。数值结果表明,调节有源元件的电阻和层数可以实现压电叠层换能器的多频特性。有源元件的适当层数可以使短路谐振频率和开路反谐振频率最小化。这些发现为设计和优化压电叠层换能器提供了指南,这些叠层换能器在开发用于某些水下声和超声应用(如超声清洗,超声化学和声纳辐射器)的多频Langevin换能器方面具有广阔的潜力。

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