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Study on crack scattering in aluminum plates with Lamb wave frequency-wavenumber analysis

机译:用兰姆波频率-波数分析研究铝板中的裂纹散布

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The multimodal characteristic of Lamb waves makes the interpretation of Lamb wave signals difficult in either the time or frequency domain. In this work, we present our study of Lamb wave propagation characterization and crack scattering using frequency-wavenumber analysis. The aim is to investigate three dimensional (3D) Lamb wave behavior in the presence of crack damage via the application of frequency-wavenumber analysis. The analysis techniques are demonstrated using simulation examples of an aluminum plate with a through-thickness crack. Both in-plane and out-of-plane components are acquired through a 3D elastodynamic finite integration technique (EFIT), while the out-of-plane component is also experimentally obtained using a scanning laser Doppler vibrometer for verification purposes. The time-space wavefield is then transformed to the frequency-wavenumber domain by a two dimensional (2D) Fourier transform and the out-of-plane EFIT results are compared to experimental measurements. The experimental and simulated results are found to be in close agreement. The frequency-wavenumber representation of in-plane and out-of-plane components shows clear distinction among various Lamb wave modes that are present. However, spatial information is lost during this 2D transformation. A short space 2D Fourier transform is therefore adopted to obtain the frequency-wavenumber spectra at various spatial locations, resulting in a space-frequency-wavenumber representation of the signal. The space-frequency-wavenumber analysis has shown its potential for indicating crack presence.
机译:兰姆波的多峰特性使兰姆波信号在时域或频域上都难以解释。在这项工作中,我们介绍了我们使用频率-波数分析对兰姆波传播特性和裂纹散射进行的研究。目的是通过应用频率-波数分析来研究存在裂纹损伤的三维(3D)兰姆波行为。使用具有全厚度裂纹的铝板的模拟示例演示了分析技术。通过3D弹性动力学有限积分技术(EFIT)可以获取平面内和平面外分量,而出于验证目的,也可以使用扫描激光多普勒振动计通过实验获得平面外分量。然后,通过二维(2D)傅里叶变换将时空波场转换为频数域,并将平面外EFIT结果与实验测量结果进行比较。实验结果和模拟结果非常吻合。平面内和平面外组件的频率波数表示形式在存在的各种兰姆波模式之间显示出明显的区别。但是,在此2D转换过程中会丢失空间信息。因此,采用短空间二维傅立叶变换来获得各个空间位置处的频率-波数谱,从而得到信号的空间-频率-波数表示。空间频率波数分析显示了其潜在的指示裂纹存在的可能性。

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