通过λ波模式相移评估进行隐蔽腐蚀监测

Liping Huang, Liang Zeng, Xuhui Zhang, Xiang Wan, Feiyu Chen
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引用次数: 0

摘要

在实时监测薄壁金属结构中的隐性腐蚀方面,兰姆波检测是一个很有前途的候选方法。飞行时间(ToF)表示厚度减小引起的群速度变化,是常用的方法,但在腐蚀的早期阶段,其灵敏度有限。为解决这一问题,本文定义了相移与相速度的函数关系,并对腐蚀检测进行了评估。具体来说,本文采用了解析交叉相关法,同时估算了腐蚀存在前后两个 Lamb 波响应之间的群延迟和相移。模拟实例表明,与 ToF 相比,相移对腐蚀灵敏度有明显改善,而且随着腐蚀的加深,相移值几乎呈单调增长。最后,还介绍了一个实验实例,其中部署了一个主动传感器网络,并引入了概率成像算法。成像结果表明,所提出的方法可以成功识别并准确定位隐藏的腐蚀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hidden corrosion monitoring via phase shift evaluation of lamb wave modes
Lamb wave inspection is a promising candidate for real-time monitoring of hidden corrosion in thin-walled metallic structures. The time-of-flight (ToF) which represents the variation of group velocity due to thickness reduction is commonly used, but its sensitivity is limited at the early stage of corrosion. To address this issue, the phase shift as a function of the phase velocity is defined and evaluated for corrosion detection in this paper. Specifically, the analytic cross-correlation method is applied, which estimates the group delay and the phase shift between two Lamb wave responses before and after the existence of corrosion simultaneously. The simulated examples show that the phase shift performs an obvious improvement on corrosion sensitivity compared to the ToF, and its value increases nearly monotonically as the corrosion gets deeper. Ultimately, an experimental example is also introduced, where an active sensor network is deployed and a probabilistic imaging algorithm is introduced. The imaging results demonstrate that the proposed method could successfully identify and accurately localize the hidden corrosion.
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