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首页> 外文期刊>IEEE Transactions on Magnetics >Motion induced remote field eddy current effect in a magnetostatic non-destructive testing tool: a finite element prediction
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Motion induced remote field eddy current effect in a magnetostatic non-destructive testing tool: a finite element prediction

机译:静磁无损检测工具中运动引起的远场涡流效应:有限元预测

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摘要

A hitherto unobserved phenomenon motion induced remote field eddy current effect, is presented in this paper. A numerical study of the non-destructive inspection of tubing with conducting walls, using a DC electromagnetic probe led to the detection of this interesting effect. This paper describes a bi-directional transmission of the electromagnetic field energy through the tube walls, similar to the phenomenon responsible for the Remote Field Eddy Current (RFEC) effect in eddy current (an AC electromagnetic nondestructive testing tool) inspection of tubing. Thus far it was considered that the RFEC effect by the nature of its physics was possible only in the presence of AC excitation in tubular geometries. However, it is shown in this paper that currents induced by magnetic flux moving over conducting material produce a RFEC effect even when a DC probe is used. This phenomenon may enable extraction of valuable information regarding the entire thickness of the tube wall from measurements made on the same side as the excitation source.
机译:本文提出了迄今为止尚未观察到的现象运动引起的远场涡流效应。使用直流电磁探头对导电壁管道进行无损检查的数值研究导致发现了这种有趣的效果。本文介绍了电磁场能量通过管壁的双向传输,类似于导致管道涡流(交流电磁无损检测工具)检查中的远程场涡流(RFEC)效应的现象。迄今为止,人们认为,只有在管状几何结构中存在交流激励的情况下,RFEC的物理性质才可能产生RFEC效应。但是,本文显示,即使使用DC探头,由磁通量流过导电材料所感应的电流也会产生RFEC效应。这种现象可以使得能够从与激发源相同的一侧进行的测量中提取关于管壁的整个厚度的有价值的信息。

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