Simulation Study on Wideband Transducer with Longitudinal-Flexural Coupling Vibration

Y. Gou, Yu-yu Dai
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Abstract

This paper designed a longitudinal bending coupled piezoelectric transducer. The transducer is composed of a rear metal block, a longitudinally polarized piezoelectric ceramic piece and a slotted round front cover. The longitudinal vibration of the piezoelectric oscillators drive the front cover to generate bending vibration to widen the operating frequency band while reducing the fluctuation of transmission voltage response. In this paper, the design method of this multimode coupled transducer is given, and the method is verified by numerical simulation. The results show that the analytical theory and numerical simulation results have good consistency. This longitudinal-flexural coupled vibration transducer widens the bandwidth while preserving the emission voltage response.
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宽带纵向-弯曲耦合振动换能器仿真研究
本文设计了一种纵向弯曲耦合压电换能器。该换能器由后金属块、纵向极化压电陶瓷片和开槽圆形前盖组成。压电振子的纵向振动驱动前盖产生弯曲振动,拓宽了工作频带,减小了传输电压响应的波动。本文给出了该多模耦合换能器的设计方法,并通过数值仿真对该方法进行了验证。结果表明,解析理论与数值模拟结果具有较好的一致性。这种纵向-弯曲耦合振动换能器在保持发射电压响应的同时拓宽了带宽。
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