基于导波的钢板焊缝和裂纹检测

Mingyu Lu, Xi Lu, Limin Zhou, Z. Su, L. Ye
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引用次数: 6

摘要

利用结构集成的锆钛酸铅(PZT)贴片进行结构健康监测的导波损伤检测技术已经发展多年。然而,该方法仍处于形成阶段,主要挑战之一是在实际复杂结构中的应用。广泛研究简单几何结构的构造技术,将其应用于构造更复杂的结构,具有重要的实际意义。本文采用相同尺寸的不同钢板在焊接区检测一条2mm间隙的贯通裂纹,研究裂纹中水、醇、环氧树脂、泥浆等不同杂质对波传播的影响。采用先进的信号处理和模式识别技术,如小波变换,特别是连续小波变换和希尔伯特变换,提高了钢板损伤检测的效率。仿真结果验证了实验结果。实验和仿真结果表明了该方法的有效性,以及不同因素对钢板损伤检测的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Guided-wave-based detections of weld and crack in steel plates
The guided-wave-based damage detection techniques using structurally integrated Lead-zirconate-titanate (PZT) patches for structural health monitoring (SHM) have been developed for many years. However, the method is still in its formative years and one of the main challenges is the application in real-word complicated structures. It's very important to widely study the techniques in the structures with simple geometries which can be used to construct more complicated structures for practical applications. In this paper, different steel plates of the same dimensions were used for detecting a 2mm-gap through-crack in welded zone and studying the effects of different impurities such as water, alcohol, epoxy and mud in the crack on wave propagations. Advanced signal processing and pattern recognition techniques such as the wavelet transform (WT) especially continuous wavelet transform (CWT) and Hilbert transform (HT) were used to enhance the efficiency of damage detections in the steel plates. Some simulation results were obtained to validate of experimental results. The results from both the experiments and simulations show the validity of the proposed method and the effects of different factors on the damage detection of the steel plates.
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