Detection and characterization of fatigue cracks in butt welds of offshore structures using the eddy current method

IF 2 Q2 ENGINEERING, MULTIDISCIPLINARY
René Gansel, H. Maier, S. Barton
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引用次数: 0

Abstract

A reliable assessment of the actual condition of wind turbines is essential for their continuous operation, or if an extension of their service life is considered. To be able to make valid statements about the condition of the welded structure, an inspection concept for the reliable detection of fatigue cracks and damage on welds of the offshore tower and foundation structures is essential. In the present study, five different eddy current differential sensors were evaluated on cyclically fatigued DY butt welds under tensile load with a focus on the signal-to-noise ratio (SNR). Based on previous evaluations, two sensors were selected for semi-automatic weld testing. It is shown that due to the weld crossing necessary for the detection of fatigue cracks, air coils arranged parallel to the test surface have the highest SNR. This must be contrasted with the potential for crack depth determination. In this context, coils with different arrangement with respect to the test surface were analyzed. It is shown that groove depths can be differentiated based on the imaginary part of the measurement signal for groove depths of up to 8 mm, and actual fatigue cracks in welds with a crack depth of 0.5 mm were detected.
海洋结构对接焊缝疲劳裂纹的涡流检测与表征
对风力涡轮机的实际状况进行可靠的评估对于其持续运行或考虑延长其使用寿命至关重要。为了能够对焊接结构的状况做出有效的判断,一种可靠地检测海上塔和基础结构焊缝疲劳裂纹和损伤的检测概念是必不可少的。在本研究中,对五种不同的涡流差分传感器在拉伸载荷下的循环疲劳DY对接焊缝上进行了评估,重点研究了信噪比(SNR)。根据之前的评价,选择了两种传感器进行半自动焊接检测。结果表明,由于检测疲劳裂纹所必需的焊缝交叉,平行于试验面布置的空气盘管具有最高的信噪比。这必须与确定裂纹深度的可能性进行对比。在这种情况下,线圈与不同的安排相对于测试表面进行了分析。结果表明,在坡口深度不超过8 mm的情况下,根据测量信号的虚部可以区分坡口深度,并检测出裂纹深度为0.5 mm的焊缝的实际疲劳裂纹。
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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来源期刊
CiteScore
3.80
自引率
9.10%
发文量
25
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