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Time Reversal Method for Guided Waves with Multimode and Multipath on Corrosion Defect Detection in Wire

机译:导线腐蚀模式中多模多径导波的时间反转方法

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This study identified depths of artificial pitting corrosion on the galvanized steel wires, frequently used in bridge cables, based on the time reversal method (TRM). Specifically, the multimode longitudinal ultrasonic guided waves are excited in terms of characteristics of radical distribution of the normalized average energy flow density (NAPFD) in a wire. Furthermore, the complex defect scattered signals are difficult to interpret, which are attributed to multimode, multipath and dispersion, but are considered to enhance the focused energy through the TRM while the different depths of defect are explicitly identified by the normalized amplitudes of reconstructed wave packets. Finally, in contrast to the traditional monitoring approach relying on the amplitude of defect echo, the proposed method in this study is demonstrated to have a higher sensitivity to recognize the progressive increase of corrosion depth.
机译:这项研究基于时间反转法(TRM),确定了桥梁电缆中常用的镀锌钢丝上的人工点蚀深度。具体地,根据金属丝中的归一化平均能量流密度(NAPFD)的自由基分布的特征来激发多模纵向超声导波。此外,复杂的缺陷散射信号难以解释,这归因于多模,多径和色散,但被认为是通过TRM增强了聚焦能量,而缺陷的不同深度则通过重构波包的归一化幅度来明确识别。 。最后,与传统的依靠缺陷回波幅度的监测方法相比,本研究中提出的方法被证明具有更高的灵敏度来识别腐蚀深度的逐渐增加。

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