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Coupling pulse eddy current sensor for deeper defects NDT

机译:耦合脉冲涡流传感器,用于更深的缺陷NDT

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摘要

Deep defect detection for ferromagnetic materials is a challenging task for Eddy Current testing (ECT) due to the skin effect of the low penetration depth. Pulsed Eddy Current testing (PEG) is a potential and effective method for detecting deep subsurface defects as it can obtain multiple depth information owing to its wide spectrum range. A novel weak coupling sensing structure of pulsed eddy current is proposed. In particular, the structure improves the ratio of the indirect coupling energy by reducing the direct coupling energy between the excitation and the detection coils. It obviously improves the ability to detect deep subsurface defects of ferromagnetic materials. The principle of penetration and the analysis of its equivalent circuit are presented. In addition, both experiments and simulations on different defects detection have been studied. The results have confirmed that all types of defects can be detected and it has shown the relatively monotonic linear relationships and reliability. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于低穿透深度的皮肤效应,铁磁材料的深度缺陷检测是涡流测试(ECT)的具有挑战性的任务。脉冲涡流测试(PEG)是用于检测深度地下缺陷的潜在和有效方法,因为由于其宽的光谱范围,它可以获得多个深度信息。提出了一种新型脉冲涡流的弱耦合传感结构。特别地,该结构通过降低激发和检测线圈之间的直接耦合能量来改善间接耦合能量的比率。它显然提高了检测铁磁材料深层缺陷的能力。介绍了渗透原理和其等效电路的分析。此外,已经研究了对不同缺陷检测的实验和模拟。结果证实,可以检测到所有类型的缺陷,并且已经示出了相对单调的线性关系和可靠性。 (c)2019 Elsevier B.v.保留所有权利。

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