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Leaky Lamb Waves of a Piezoelectric Plate Immersed in a Conducting Fluid -Analysis and Measurement

机译:浸入导电流体中的压电板泄漏兰姆波-分析与测量

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摘要

This paper investigates the characteristics of leaky Lamb waves propagating in a piezoelectric plate immersed in a conductive fluid. A new experimental measurement system is proposed to accurately determine the velocity variation and the attenuation of the leaky Lamb waves of a piezoelectric plate induced by fluid-lading effect. The measurement method utilizes a comb PZT transducer for generating Lamb waves and a PVDF film receiver for measuring the wave signals. A step measuring method and its signal waveform processing technique are developed, which are particularly suitable for measuring the difference in wave velocity and attenuation between a regular Lamb wave and a leaky one. The theoretical wave velocity and attenuation of leaky Lamb waves is numerically calculated based on partial wave theory. Comparison between the calculated results and the experiment data indicates that the partial wave theory may underestimates the liquid loading effects. Furthermore, it is also observed that the conductivity of the loading fluid has a much stronger influence on the characteristics of leaky Lamb wave of piezoelectric materials than what is predicted by partial wave theory. These new experimental findings indicate that the partial wave theory is inadequate for analyzing leaky Lamb wave. A modified theoretical model is needed.
机译:本文研究了泄漏兰姆波在浸没在导电流体中的压电板上传播的特性。提出了一种新的实验测量系统,以准确地确定由于流固效应引起的压电板泄漏兰姆波的速度变化和衰减。该测量方法利用梳状PZT换能器产生兰姆波,并利用PVDF薄膜接收器测量波信号。开发了一种阶跃测量方法及其信号波形处理技术,特别适用于测量常规兰姆波与泄漏兰伯波之间的波速和衰减差异。基于偏波理论,数值计算了泄漏兰姆波的理论波速和衰减。计算结果与实验数据的比较表明,分波理论可能会低估液体的加载效果。此外,还观察到,与部分波理论所预测的相比,加载流体的电导率对压电材料的泄漏兰姆波特性具有更大的影响。这些新的实验发现表明,分波理论不足以分析泄漏的兰姆波。需要修改后的理论模型。

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