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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >An eddy current probe suitable to gain information about the depth of near-side flaws much deeper than the depth of penetration
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An eddy current probe suitable to gain information about the depth of near-side flaws much deeper than the depth of penetration

机译:一种涡流探头,适合于获取比穿透深度更深的近侧缺陷深度信息

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摘要

This study proposes an approach to gain information about the depth of near-side flaws using eddy currents. The approach utilizes only two coils, one of which works as an exciter and the other as a detector, like conventional eddy current testing using a transmitter-receiver probe. The uniqueness of this approach is that signals obtained by this approach change significantly with the depth of a flaw even though the flaw is much deeper than the depth of penetration. After the physical background of the approach is explained, its validity is confirmed in experiments. The experiments utilize a 25 mm thick austenitic stainless steel plate with five artificial rectangular slits of 40 mm length, 0.5 mm width, and 1,5, 10,15, and 20 mm depth. The experiments confirm clear differences between signals generated by the five slits even although the exciter is driven at 50 kHz at which the depth of penetration is approximately 2.0 mm. Subsequent finite element simulations are carried out to confirm the validity of the experimental results and to support discussion about the physical background of the approach.
机译:这项研究提出了一种使用涡流获得有关近侧缺陷深度的信息的方法。该方法仅利用两个线圈,其中一个用作激励器,另一个用作检测器,就像使用发射器-接收器探头进行常规涡流测试一样。这种方法的独特之处在于,即使缺陷比穿透深度更深,通过这种方法获得的信号也会随着缺陷的深度而显着变化。在解释了该方法的物理背景之后,在实验中证实了其有效性。实验使用了一块25毫米厚的奥氏体不锈钢板,该板具有五个40毫米长,0.5毫米宽,1.5毫米,10.15毫米和20毫米深度的人造矩形缝。实验证实,即使激励器以50 kHz的频率驱动,穿透深度约为2.0 mm,五个狭缝产生的信号之间也存在明显差异。随后进行了有限元模拟,以确认实验结果的有效性并支持对该方法的物理背景的讨论。

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