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首页> 外文期刊>Measurement Science & Technology >Correlation of defect depth with diffusion time of eddy currents for the defects in conducting materials using transient eddy current NDE
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Correlation of defect depth with diffusion time of eddy currents for the defects in conducting materials using transient eddy current NDE

机译:用瞬态涡流NDE对涡流扩散时间与涡流扩散时间的相关性

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摘要

Detailed experimental studies have been carried out to determine the diffusion time, t(m), at which the eddy current due to the defect is maximum for the defects located at different depths below the top surface of a stack of aluminum plates. These subsurface defects were detected using a transient eddy current non-destructive evaluation system based on a fluxgate sensor with differential excitation coil in the form of a double 'D'. The diffusion time, t(m), directly provides information about the depth of the defect and therefore has been evaluated for defects located at different depths from 2 to 20 mm below the top surface of the plate. The defect depth was varied in steps of 2 mm, while the overall total thickness of the stack of plates was kept constant at 21.5 mm. Each defect represented a localized loss of conducting volume, which was 70 mm in length, 1 mm in width and 1.5 mm in height. The experimental results show that the square root of the diffusion time t(m) is proportional to the depth of defect. In this system, the full sensitivity of the fluxgate sensor (0.5-1 nT) has been realized in a relatively noisy laboratory environment using an intelligent data acquisition system with built-in software.
机译:已经进行了详细的实验研究以确定扩散时间,T(m),在该扩散时间t(m),在该扩散时间t(m),在该扩散时间t(m),在该缺陷上的涡流最大限度地用于位于铝板堆叠的顶部表面下方的不同深度的缺陷。使用基于型磁涡流传感器的瞬态涡流非破坏性评估系统检测这些地下缺陷,该浮雕传感器以双重'D'的形式具有差动激励线圈。扩散时间T(M)直接提供关于缺陷的深度的信息,因此已经针对位于板上表面下方的2至20mm的不同深度的缺陷评估。缺陷深度以2mm的步长而变化,而板块的总厚度在21.5mm处保持恒定。每个缺陷表示导电体积的局部损耗,其长度为70mm,宽度为1mm,高度为1.5mm。实验结果表明,扩散时间T(m)的平方根与缺陷深度成比例。在该系统中,使用带内置软件的智能数据采集系统,在相对嘈杂的实验室环境中实现了浮雕传感器(0.5-1nt)的完整灵敏度。

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