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首页> 外文期刊>Journal of intelligent material systems and structures >Modeling and analysis of multilayer piezoelectric-elastic spherical transducers
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Modeling and analysis of multilayer piezoelectric-elastic spherical transducers

机译:多层压电-弹性球形换能器的建模与分析

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摘要

An exact analytical model of multilayer piezoelectric-elastic spherical transducers is established in this article, and their dynamic characteristics are studied. Based on the linear theory of piezoelasticity, the dynamic analytical solution is derived in terms of Bessel functions, Lommel functions, Gamma functions, and Generalized Hypergeometric functions, and the electric impedance is obtained to determine the resonance frequencies. By proper selection of the layer number and geometric dimensions, the proposed model can approximately degrade into some special cases in the previous works, including single-layer piezoelectric spherical transducer, two-layer piezoelectric-elastic spherical transducer, and three-layer sandwiched piezoelectric-elastic-piezoelectric spherical transducer. Comparisons between the results of the proposed model and the ones of these special cases are also given and good agreements are found. Furthermore, parametric studies are conducted to discuss the effects of the key parameters on the dynamic characteristics of these special cases and a multilayer case, such as the first resonance and anti-resonance frequencies as well as the corresponding electromechanical coupling factor. This work contributes to an overall understanding of the dynamic characteristics of miniature piezoelectric hollow sphere transducers (BBs) and stacked piezoelectric spherical transducers. The developed model can be used to guide the design of the multilayer piezoelectric-elastic spherical transducers for promising applications in underwater acoustic detection, ultrasonic imaging, hydrophones, and nondestructive testing.
机译:建立了多层压电-弹性球形换能器的精确解析模型,并对其动态特性进行了研究。基于压电弹性线性理论,根据贝塞尔函数,洛梅尔函数,伽玛函数和广义超几何函数推导了动态解析解,并获得了电阻抗来确定谐振频率。通过适当选择层数和几何尺寸,在先前的工作中,所提出的模型可以近似地分解为一些特殊情况,包括单层压电球形换能器,两层压电弹性球形换能器和三层夹心压电换能器。弹性压电球形换能器。还对所提出的模型的结果与这些特殊情况的结果进行了比较,并找到了很好的协议。此外,进行了参数研究,以讨论关键参数对这些特殊情况和多层情况下的动态特性的影响,例如第一共振和反共振频率以及相应的机电耦合因子。这项工作有助于全面了解微型压电空心球传感器(BBs)和堆叠式压电球传感器的动态特性。所开发的模型可用于指导多层压电-弹性球形换能器的设计,从而有望在水下声学检测,超声成像,水听器和无损检测中应用。

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