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Experimental and Numerical Study of Nonlinear Lamb Waves of a Low-Frequency S0 Mode in Plates with Quadratic Nonlinearity

机译:二次非线性板中低频S0模非线性兰姆波的实验和数值研究

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摘要

This paper investigates the propagation of low-frequency S0 mode Lamb waves in plates with quadratic nonlinearity through numerical simulations and experimental measurements. Both numerical and experimental results manifest distinct ultrasonic nonlinear behavior which is mainly presented by the second harmonics. Meanwhile, we find that both the acoustic nonlinearity parameter and dispersion distance show the exponential decay trend with the increase of frequency-thickness. Moreover, the results reveal that the frequency is key to affect the acoustic nonlinearity parameter and dispersion distance with the same frequency-thickness. This study theoretically and experimentally reveals that nonlinear Lamb waves of the low-frequency S0 mode are feasible to quantitatively identify material weak nonlinearity in plates.
机译:本文通过数值模拟和实验测量研究了低频S0模式兰姆波在具有二次非线性的平板中的传播。数值和实验结果均显示出明显的超声非线性行为,这主要由二次谐波呈现。同时,我们发现随着频率厚度的增加,声学非线性参数和色散距离均呈现指数衰减趋势。此外,结果表明,在相同的频率厚度下,频率是影响声学非线性参数和色散距离的关键。从理论和实验上的研究表明,低频S0模式的非线性Lamb波对于定量识别板中的材料弱非线性是可行的。

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