Inspection of Pitting Corrosions on Weld Overlay Cladding Using Uniform and Rotating Eddy Current Testing

Inspection of Pitting Corrosions on Weld Overlay Cladding Using Uniform and Rotating Eddy Current Testing
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使用均匀旋转涡流检测检查堆焊层的点蚀

DOI:
10.1109/tim.2021.3108521
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发表时间:
2021
影响因子:
5.6
通讯作者:
Noritaka Yusa
Noritaka Yusa
中科院分区:
工程技术2区
文献类型:
--
作者:
Jiuhao Ge;Fanwei Yu;Takuma Tomizawa;Haicheng Song;Noritaka Yusa

文献摘要

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这项研究研究了使用均匀的涡流测试检测到不锈钢焊接覆盖层覆盖层的适用性,这对表面波动不敏感,并且旋转的涡流测试(RECT)可以构成。
This study investigated the applicability of detecting pitting corrosions on stainless steel weld overlay cladding using uniform eddy current testing, which is insensitive to surface undulation, and rotating eddy current testing (RECT), which can be considered a superposition of uniform eddy current testing in orthogonal directions. The performance of the two techniques in detecting artificial pitting corrosions on and next to weld beads was compared. The signal distributions revealed that only RECT was capable of describing the surface profiles of pitting corrosions. The results of uniform eddy current testing could not distinguish between pitting corrosions and cracks. The probability of detection curves drawn to quantitatively indicate the detection capabilities of the two techniques revealed that uniform eddy current testing with induced eddy currents parallel and perpendicular to weld beads was better than RECT in detecting pitting corrosions on and next to weld beads, respectively. Scanning twice by uniform eddy current testing at orthogonal orientations may be a better process for detecting pitting corrosion on weld overlay cladding compared with using RECT. The measured signals of the two techniques in normal direction were located around the edges of the pitting corrosions, which only indicated the depth around edges. The results suggested that uniform eddy current testing and RECT with normal direction magnetic field signals may be inadequate for evaluating the maximum depth of pitting corrosions or large corrosions.