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Analysis of Eddy Current Array Probe Signals According to Arrangement of Transmit-Receive Coil

机译:根据发射接收线圈排列的涡流阵列探针信号分析

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Eddy current array probe is consisted of several transmit coils and receive coils. The magnetic fields are generated by transmit coil and the eddy current is generated in the conducting materials by the time-varying magnetic field. Using the receive coil the magnetic field generated by source current of transmit coil and eddy current is caught. In this paper the eddy current signals of array probe according to arrangement of transmit coil and receive coil are analyzed. The type of defect is FBH and the depth of defects are 40[percent], 60[percent] and 100[percent] of thickness of INCONEL 600 steam generator tubes in nuclear power plant. As the distance and bearings of transmit coil and receive coil are changed, the eddy current signals are obtained. To obtain these signals, three-dimensional electromagnetic analysis based on Maxwell's equation is performed using OPERA-3D. Analysis domain is discredited by tetrahedral mesh and the number of nodes is 1,014,467. The signal difference can be seen according to the arrangement of transmit-receive coil. The results in this paper can be helpful when the ECT signals from EC array probe are evaluated and analyzed.
机译:涡流阵列探头包括几个发射线圈和接收线圈。磁场由发射线圈产生,并且通过时变磁场在导电材料中产生涡电流。使用接收线圈,捕获了发射线圈和涡电流的源电流产生的磁场。在本文中,分析了根据发射线圈和接收线圈的布置的阵列探针的涡流信号。缺陷的类型是FBH,缺陷深度为核电站Inconel 600蒸汽发生器管的厚度为40 [百分比],60千]和100 [百分比]。随着发射线圈和接收线圈的距离和轴承改变,获得涡流信号。为了获得这些信号,使用Opera-3D执行基于MaxWell等式的三维电磁分析。分析域由四面体网格错位,节点的数量为1,014,467。可以根据发射接收线圈的布置来看看信号差。当评估和分析来自EC阵列探针的ECT信号时,本文的结果可以有所帮助。

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