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首页> 外文期刊>Journal of intelligent material systems and structures >Analytical and experimental analysis of Lamb wave generation in piezoelectrically driven Timoshenko beam
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Analytical and experimental analysis of Lamb wave generation in piezoelectrically driven Timoshenko beam

机译:压电驱动的蒂莫申科梁产生兰姆波的分析和实验分析

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摘要

Piezoelectric-generated Lamb wave in a Timoshenko beam is studied, analytically, experimentally, and using finite element simulation in this article. The governing equations of the beam with the piezoelectric patches are derived based on integration of the piezoelectric transducer vibration equations into the vibration equations of the Timoshenko beam structure. Finite element model of the beam and the piezoelectric patches is then developed in which the Rayleigh damping factors have been estimated using modal analysis. The results obtained by proposed analytical and finite element models are compared with experimental ones. A significant agreement has been observed and three principal sets of signals have been distinguished by experimental, analytical, and finite element method results: the direct emitted waves and reflected waves from the clamped and tip boundaries. The velocity of wave propagation in a brass beam is determined about 4800m/s with the actuation frequency of 200kHz using Lamb wave propagation signals. The results show that exciting the structure in high frequency prevents to overlap the emitted waves from the actuator and reflected waves from the boundaries in short structures.
机译:本文通过有限元模拟分析,实验和研究了Timoshenko束中压电产生的Lamb波。基于将压电换能器振动方程集成到Timoshenko梁结构的振动方程中,得出带有压电贴片的梁的控制方程。然后建立梁和压电贴片的有限元模型,其中已经使用模态分析估计了瑞利阻尼因子。通过提议的分析和有限元模型获得的结果与实验结果进行了比较。通过实验,分析和有限元方法的结果,已经观察到一个显着的一致性,并且已经区分出三组主要信号:来自被夹住和尖端边界的直接发射波和反射波。使用兰姆波传播信号,在200kHz的激励频率下,黄铜束中的波传播速度确定为4800m / s。结果表明,在短结构中,以高频率激励结构可防止执行器的发射波与边界的反射波重叠。

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