Multi-time Lamb waves space wavenumber imaging method based on ultrasonic-guided wavefield

Zenghua Liu, Xiaoyu Liu, Yanping Zhu, Zhaojing Lu, Long Chen, Bin Wu, Cunfu He
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Abstract

Ultrasonic-guided waves full wavefield scanning technology can realize non-destructive testing with non-contact. The damage detection method based on ultrasonic-guided waves’ full wavefield data is widely used in thin-walled plate structures. The defect imaging method based on full wavefield data faces the challenge of simultaneously obtaining the defect contour and thickness direction information. Based on the ultrasonic-guided waves full wavefield scanning detection technology, this paper proposes a multi-time Lamb waves space wavenumber imaging method. In this method, the analytic signal of Lamb wavefield at each moment is constructed by Hilbert transform, and the phase unwrapping is carried out by amplitude sorting and multi-clustering method. Then the wavenumber information is obtained by calculating the phase gradient. The wavenumber at different times of each measurement point is arranged in descending order, and the median wavenumber is extracted as the wavenumber at each measurement point. Based on the dispersion relationship of the tested specimen, the quantitative detection of the plate thickness in the detection area is realized. This method is first applied to the simulation model. Then it is applied to the defect imaging and quantitative detection of aluminum plates with rectangular groove defects and carbon fiber reinforced plastics (CFRP) plates with delamination defects. In simulation and experiment, the local wavenumber imaging method, the frequency domain instantaneous wavenumber imaging method, and the multi-time Lamb waves space wavenumber imaging method are used for defect imaging and quantification. The imaging results are compared and analyzed. The result shows that the multi-time Lamb waves space wavenumber imaging method can restore the morphology of groove defects in aluminum plates and delamination defects in CFRP plates, and accurately estimate the depth of groove defects and the location of delamination defects.
基于超声波引导波场的多时间兰姆波空间波数成像方法
超声导波全波场扫描技术可实现非接触式无损检测。基于超声导波全波场数据的损伤检测方法被广泛应用于薄壁板结构中。基于全波场数据的缺陷成像方法面临着同时获取缺陷轮廓和厚度方向信息的挑战。本文在超声导波全波场扫描检测技术的基础上,提出了一种多时间兰姆波空间波数成像方法。在该方法中,通过希尔伯特变换构建每个时刻的 Lamb 波场解析信号,并通过振幅排序和多聚类方法进行相位解包。然后通过计算相位梯度获得波长信息。每个测点不同时间的文波数按降序排列,提取中值文波数作为每个测点的文波数。根据被测样品的色散关系,实现对检测区域板厚的定量检测。这种方法首先应用于模拟模型。然后将其应用于具有矩形槽缺陷的铝板和具有分层缺陷的碳纤维增强塑料 (CFRP) 板的缺陷成像和定量检测。在仿真和实验中,采用了局部波数成像法、频域瞬时波数成像法和多时间兰姆波空间波数成像法进行缺陷成像和定量检测。对成像结果进行了比较和分析。结果表明,多时间兰姆波空间波数成像法能够还原铝板沟槽缺陷和 CFRP 板分层缺陷的形态,并能准确估计沟槽缺陷的深度和分层缺陷的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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