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Effects of electrodes and electrical connections of piezoelectric layers on dynamic characteristics of radially polarized multilayer piezoelectric cylindrical transducers

机译:电极和压电层的电连接对径向极化多层压电圆柱换能器动态特性的影响

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摘要

Piezoelectric cylindrical transducer is a type of excellent smart devices that can generate radial sound radiation due to its unique structural characteristics and has been widely used for ultrasonic and underwater sound applications. In the design of a piezoelectric cylindrical transducer, especially with the multilayer structure, the electrodes and electrical connections of piezoelectric layers are two key factors affecting the device performance but have not been well evaluated, which result in the inaccurate prediction of dynamic characteristics. This work establishes the exact theoretical models for radially polarized multilayer piezoelectric cylindrical transducers by taking into account the electrodes and electrical connections of piezoelectric layers. Based on the plane stress assumption, the dynamic solutions of the models are derived. Analytical expressions of electric impedances are also derived to obtain the resonance frequencies. In addition, the analytical solutions are validated using the special example in the earlier work and comparing them with the finite element analysis results. Subsequently, the effects of the electrodes and electrical connections of piezoelectric layers on the dynamic characteristics of the transducer are analyzed and discussed. The results show that the electrode thickness, the electrode type, and the parallel and series connections significantly affect the transducer's performance, thus providing useful guidelines in the design of piezoelectric cylindrical transducers. This work contributes to an overall analysis on the dynamic characteristics of the radially polarized multilayer piezoelectric cylindrical transducers, which is very helpful to improve the performance of two-dimensional emitter and receiver in underwater sound and ultrasonic applications.
机译:压电圆柱换能器是一种出色的智能设备,由于其独特的结构特性而可以产生径向声音辐射,并已广泛用于超声波和水下声音应用。在压电圆柱换能器的设计中,特别是在多层结构的设计中,压电层的电极和电连接是影响器件性能的两个关键因素,但尚未得到很好的评估,这导致动态特性的预测不准确。这项工作通过考虑压电层的电极和电连接,为径向极化的多层压电圆柱形换能器建立了精确的理论模型。基于平面应力假设,得出了模型的动态解。还导出电阻抗的解析表达式以获得共振频率。此外,使用早期工作中的特殊示例验证了解析解,并将其与有限元分析结果进行了比较。随后,分析和讨论了电极和压电层的电连接对换能器动态特性的影响。结果表明,电极厚度,电极类型以及并联和串联会显着影响换能器的性能,从而为压电圆柱换能器的设计提供有用的指导。这项工作有助于对径向极化的多层压电圆柱形换能器的动态特性进行整体分析,这对于改善二维声发射器和接收器在水下声和超声应用中的性能非常有帮助。

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