利用高速磁漏试验尾场泄漏数据区分表面和内部缺陷

A. G. Antipov, A. Markov
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引用次数: 0

摘要

在漏磁无损检测实践中,如何区分危险的内部缺陷和表面缺陷产生的信号是一个非常尖锐的问题。本文在三维计算机模拟的基础上表明,在显著的检测速度下,在新兴涡流的影响下,离表面金属层最远的最大磁化区域移到了磁化系统的后极后面。从速度、相对于后极的考虑截面距离和层深的角度研究了以轨道形式的测试对象中的磁感应分布。同时,研究了表面缺陷和内部缺陷两种缺陷存在时的场分布。结果表明,后极后的磁场分布与极间空间的磁场分布有显著差异。两个相反的磁通量在后极后面形成:在物体的主体中磁通量向一个方向移动,而靠近表面的磁通量则向相反的方向流动。由于磁通方向相反,表面缺陷和内部缺陷的信号具有不同的极性,可以用来区分它们。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DIFFERENTIATION OF SURFACE AND INTERNAL DEFECTS BY USING TAIL FIELD LEAKAGE DATA AT HIGH-SPEED MFL TESTING
In the practice of magnetic flux leakage non-destructive testing the problem of distinguishing signals generated by dangerous internal defects from signals generated by surface flaws is very acute. In this paper on the basis of three-dimensional computer simulation it was shown that at significant inspection speed the area of the maximum magnetization of the most remote from the surface metal layers under the influence of emerging eddy currents is shifted behind the rear pole of the magnetizing system. Studies of magnetic induction distributions in the testing object in the form of a rail from speed, from the distance of the section under consideration relative to the rear pole and from the depth of the layer are carried out. Also, the distributions of the field in the presence of two types of defects – surface and internal – are studied. It was found that the magnetic field distribution behind the rear pole differs significantly from the distribution in the interpole space. Two contrary magnetic fluxes are formed behind the rear pole: in the bulk of the object the magnetic flux moves in one direction and near the surface magnetic flux flows in the opposite one. Since the flux directions are opposite, the signals from surface and internal defects have different polarity, which can be used to differentiate them.
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