Investigation of a cascaded piezoelectric transducer with cone horn for multi-mode power ultrasound application

Guo Li, Ming Lei, XiaoLi Zhang, Yan Zeng, Shaojie Tang, Jianxu Shi, Liqing Hu
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Abstract

To meet the ultrasonic application requirement of high power intensity and large mechanical displacement, a new theoretical method is used to study the multi-mode characteristic of the cascaded piezoelectric transducer with cone horn in this paper. Based on equivalent circuit and Kirchhoff's law to obtain the frequency equation and vibration velocity expression of the transducer, then the resonance frequency and effective electromechanical coupling coefficient can be calculated, the velocity amplification ratio can be obtained in the meantime. This method is distinguish from traditional theoretical analysis, which avoids complex transformation of the multi-excitation sources in cascaded structure, and can calculate more performance parameters. The relationships between these performance parameters and the excitation position of the piezoelectric stack, the length and output end radius of the cone horn are analyzed and compared with the numerical simulation, and the optimized parameters of the transducer size are given. A transducer is manufactured for experimental test, the results show that the experimental value is in good agreement with theoretical calculation and finite element simulation. This work is expected to be used in the optimal analysis of the multi-mode transducer in high power ultrasonic field.
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带锥角的级联压电换能器在多模式功率超声应用中的研究
为满足高功率强度和大机械位移的超声应用要求,本文采用一种新的理论方法来研究带锥角的级联压电换能器的多模特性。基于等效电路和基尔霍夫定律求得传感器的频率方程和振动速度表达式,进而计算共振频率和有效机电耦合系数,同时求得速度放大比。这种方法区别于传统的理论分析,避免了级联结构中多激励源的复杂变换,可以计算出更多的性能参数。分析了这些性能参数与压电堆激励位置、锥角长度和输出端半径之间的关系,并与数值模拟进行了比较,给出了换能器尺寸的优化参数。制造了一个换能器进行实验测试,结果表明实验值与理论计算值和有限元模拟值吻合良好。这项工作有望用于大功率超声领域多模换能器的优化分析。
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