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Mean local frequency-wavenumber estimation through synthetic time-reversal of diffuse Lamb waves

机译:通过弥漫性羊波的合成时间逆转的平均局部频率波数估计

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摘要

Inspection of the elastic properties of plate-like structures is an important and challenging problem in many engineering disciplines. There exist multiple non-destructive inspection techniques based on active ultrasonic transducers to tackle this problem. In recent years, the usefulness of passively induced waves has also been explored. It has been shown that the diffuse waves, often referred to as coda waves, carry profound information about the elastic properties of the supporting medium. They can effectively probe the volume of a medium due to multiple scattering and long propagation paths. Moreover, the measured diffuse field can be synthetically focused using the correlation of wavefield's time histories. The local elastic properties of the medium can be inferred from the focal spot size. In this work, we demonstrate the algorithm of mean local frequency-wavenumber esti-mation through synthetic focusing of diffuse Lamb waves. We provide theoretical founda-tions for expanding the concept of mean frequency estimation in purely temporal signals to mean wavenumber estimation in a spatiotemporal Lamb wave field. The applicability of this approach for the damage detection in plate-like structures is demonstrated on alu-minum and carbon fiber reinforced polymer (CFRP) plates with localized defects. Test sam-ples are excited with sequences of white noise signals, to create optimal diffuse field conditions, and wavefield is captured using a Scanning Laser Doppler Vibrometer (SLDV). We show that the spatial maps of mean wavenumber allow for precise localization and siz-ing of damage.
机译:检查板状结构的弹性特性的检查是许多工程学科中的一个重要挑战性问题。基于主动超声换能器存在多种无损检测技术,以解决这个问题。近年来,也探讨了被动引起的波浪的有用性。已经表明,漫反射波通常被称为CODA波,携带关于支撑介质的弹性特性的深刻信息。由于多个散射和长传播路径,它们可以有效地探测媒体的体积。此外,可以使用波场时间历史的相关性合成聚焦测量的漫射场。可以从焦点尺寸推断介质的局部弹性特性。在这项工作中,我们通过漫射羔羊波的合成聚焦来展示平均局部频率 - 波数esti-mation的算法。我们提供了扩展纯时间信号中平均频率估计的概念的理论研究,以平均时空羔羊波场中的波数估计。在铝合金和碳纤维增强聚合物(CFRP)板上,对具有局部缺陷的铝和碳纤维增强聚合物(CFRP)板进行了损伤检测方法的适用性。测试SAM PLES与白噪声信号的序列激发,以产生最佳漫射场条件,并且使用扫描激光多普勒振动计(SLDV)捕获波场。我们表明平均波浪器的空间地图允许精确定位和损坏。

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