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Analysis on an improved resistance tuning type multi-frequency piezoelectric spherical transducer

机译:改进电阻调谐型多频压电球形换能器的分析

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The existing piezoelectric spherical transducers with fixed prescribed dynamic characteristics limit their application in scenarios with multi-frequency or frequency variation requirement. To address this issue, this work proposes an improved design of piezoelectric spherical transducers using the resistance tuning method. Two piezoceramic shells are the functional elements with one for actuation and the other for tuning through the variation of load resistance. The theoretical model of the proposed design is given based on our previous work. The effects of the resistance, the middle surface radius and the thickness of the epoxy adhesive layer on the dynamic characteristics of the transducer are explored by numerical analysis. The numerical results show that the multi-frequency characteristics of the transducer can be obtained by tuning the resistance, and its electromechanical coupling coefficient can be optimized by a matching resistance. The proposed design and derived theoretical solution are validated by comparing with the literature given special examples as well as an experimental study. The present study demonstrates the feasibility of using the proposed design to realize the multi-frequency characteristics, which is helpful to improve the performance of piezoelectric spherical transducers used in underwater acoustic detection, hydrophones, and the spherical smart aggregate (SSA) used in civil structural health monitoring, enhancing their operation at the multiple working frequencies to meet different application requirements.
机译:具有固定规定的动态特性的现有压电球形换能器在具有多频或频率变化要求的情况下限制了它们的应用。为了解决这个问题,这项工作提出了使用电阻调谐方法改进的压电球形传感器设计。两个压电陶瓷壳是具有一个用于致动的功能元件,另一个用于调节载荷电阻的变化。基于我们以前的工作,给出了拟议设计的理论模型。通过数值分析探索了电阻,中间表面半径和环氧粘合剂层对换能器的动态特性的影响。数值结果表明,通过调谐电阻可以获得换能器的多频特性,并且可以通过匹配电阻优化其机电耦合系数。通过与文献给出特殊例子以及实验研究,通过比较来验证所提出的设计和衍生的理论解决方案。本研究展示了使用所提出的设计实现多频特性的可行性,这有助于提高水下声学检测,水听筒和民用结构中使用的球形智能聚集体(SSA)的压电球形换能器的性能健康监控,在多个工作频率下加强其操作,以满足不同的应用要求。

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