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首页> 外文期刊>IEEE Transactions on Magnetics >Optimal Frequency of Low-Frequency Eddy-Current Testing for Detecting Defects on the Backside of Thick Steel Plates
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Optimal Frequency of Low-Frequency Eddy-Current Testing for Detecting Defects on the Backside of Thick Steel Plates

机译:检测厚钢板背面缺陷的低频涡流测试的最佳频率

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摘要

Defect detection on the backside of thick steel plates is essential for the safety maintenance of most infrastructures in which they are used. Eddy-current testing (ECT) is a promising method to detect the defects in a steel plate, and inspections at low frequencies are necessary to suppress the skin effect. However, if the frequency is reduced further, the signal from the detection coil also becomes smaller. Therefore, we assessed the optimal frequency for the detection of slit defects on the backside of a 10 mm thick steel plate based on experiments and electromagnetic simulations using the finite-element method. The results suggest that the optimal frequency to detect the defects is approximately 8-10 Hz when the height of the slit exceeds 6 mm. Similarly, in the simulation, the signal was maximized when the frequency was 8-10 Hz, which validates the experimental results. Furthermore, we propose a method to emphasize the deeper defects using multi-frequency data as a fundamental study. The results show that the backside defects are depicted more clearly.
机译:厚钢板背面的缺陷检测对于使用它们的大多数基础设施的安全维护至关重要。涡流测试(ECT)是一种有前途的检测钢板缺陷的方法,必须进行低频检查以抑制集肤效应。但是,如果进一步降低频率,则来自检测线圈的信号也变小。因此,我们基于实验和使用有限元方法的电磁模拟,评估了检测10 mm厚钢板背面狭缝缺陷的最佳频率。结果表明,当缝隙的高度超过6 mm时,检测缺陷的最佳频率约为8-10 Hz。类似地,在仿真中,当频率为8-10 Hz时,信号将最大化,从而验证了实验结果。此外,我们提出了一种使用多频数据作为基础研究来强调更深层缺陷的方法。结果表明背面缺陷的描绘更加清晰。

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