Resonant modes, acoustic impedance, and surface vibration profiles of periodic piezoceramic polymer composite plates

X. Geng, Q.M. Zhang, J. Yuan
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Abstract

In this paper, the results of a combined analytical and experimental investigation of many properties, such as the resonant modes, the acoustic impedance, and the surface vibration profile of a periodic piezocomposite plate under different boundary conditions (both in air and in fluid), are presented. Due to the approach in the analysis model, we can quantitatively predict how various modes and their coupling to the thickness resonance change as the aspect ratio of the ceramic plate changes. It is also shown that the input acoustic impedance between a fluid or a solid medium and a composite is dispersive and depends on the medium. These findings will have important implications to the design of the composite, matching layer and backing for a composite ultrasonic transducer.
周期性压电陶瓷聚合物复合板的共振模式、声阻抗和表面振动剖面
本文介绍了一种周期性压电复合材料板在不同边界条件下(空气和流体中)的共振模式、声阻抗和表面振动分布等特性的分析和实验研究结果。由于分析模型中的方法,我们可以定量预测各种模式及其与厚度共振的耦合随陶瓷板长宽比的变化情况。研究还表明,流体或固体介质与复合材料之间的输入声阻抗是色散的,并且与介质有关。这些发现将对复合超声换能器的复合材料、匹配层和衬底的设计具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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