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兰姆波模式频散的时频分析

Time-frequency analysis of the dispersion of Lamb modes.

作者信息

Prosser W H, Seale M D, Smith B T

机构信息

NASA Langley Research Center, Hampton, Virginia 23681-2199, USA.

出版信息

J Acoust Soc Am. 1999 May;105(5):2669-76. doi: 10.1121/1.426883.

Abstract

Accurate knowledge of the velocity dispersion of Lamb modes is important for ultrasonic nondestructive evaluation methods used in detecting and locating flaws in thin plates and in determining their elastic stiffness coefficients. Lamb mode dispersion is also important in the acoustic emission technique for accurately triangulating the location of emissions in thin plates. In this research, the ability to characterize Lamb mode dispersion through a time-frequency analysis (the pseudo-Wigner-Ville distribution) was demonstrated. A major advantage of time-frequency methods is the ability to analyze acoustic signals containing multiple propagation modes, which overlap and superimpose in the time domain signal. By combining time-frequency analysis with a broadband acoustic excitation source, the dispersion of multiple Lamb modes over a wide frequency range can be determined from as little as a single measurement. In addition, the technique provides a direct measurement of the group velocity dispersion. The technique was first demonstrated in the analysis of a simulated waveform in an aluminum plate in which the Lamb mode dispersion was well known. Portions of the dispersion curves of the A0, A1, S0, and S2 Lamb modes were obtained from this one waveform. The technique was also applied for the analysis of experimental waveforms from a unidirectional graphite/epoxy composite plate. Measurements were made both along and perpendicular to the fiber direction. In this case, the signals contained only the lowest order symmetric and antisymmetric modes. A least squares fit of the results from several source to detector distances was used. Theoretical dispersion curves were calculated and are shown to be in good agreement with experimental results.

摘要

准确了解兰姆波模式的速度色散对于用于检测和定位薄板缺陷以及确定其弹性刚度系数的超声无损评估方法至关重要。兰姆波模式色散在声发射技术中对于精确三角测量薄板中发射源的位置也很重要。在本研究中,展示了通过时频分析(伪维格纳-威利分布)来表征兰姆波模式色散的能力。时频方法的一个主要优点是能够分析包含多种传播模式的声信号,这些模式在时域信号中重叠和叠加。通过将时频分析与宽带声激励源相结合,只需一次测量就能确定宽频率范围内多种兰姆波模式的色散。此外,该技术提供了群速度色散的直接测量。该技术首先在铝板模拟波形分析中得到验证,其中兰姆波模式色散是已知的。从这一个波形中获得了A0、A1、S0和S2兰姆波模式色散曲线的部分。该技术还应用于单向石墨/环氧树脂复合板实验波形的分析。在沿纤维方向和垂直于纤维方向都进行了测量。在这种情况下,信号仅包含最低阶的对称和反对称模式。使用了几个源到探测器距离的结果进行最小二乘拟合。计算出的理论色散曲线与实验结果显示出良好的一致性。

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