首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >The Effect of Motion-Induced Eddy Current on High-Speed Magnetic Flux Leakage (MFL) Inspection for Thick-Wall Steel Pipe
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The Effect of Motion-Induced Eddy Current on High-Speed Magnetic Flux Leakage (MFL) Inspection for Thick-Wall Steel Pipe

机译:运动诱导涡流对厚壁钢管高速磁通泄漏(MFL)检测的影响

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摘要

The magnetic flux leakage (MFL) inspection technology is widely used in pipeline industry to detect defects to ensure pipeline safety. During the high-speed inspection, a relative motion occurred between the pipeline inspection gauge (PIG) and the steel pipe wall will generate motion-induced eddy current (MIEC). There is a lack of research on analyzing the effect of MIEC on high-speed MFL inspection for thick-wall steel pipe. In this article, a three-dimensional (3D) finite-element method (FEM) simulations are conducted with an inspection speed range of 0 m/s to 8 m/s and a wall thickness range of 8 mm to 15 mm. Simulation results show that both high-speed inspection and thick-wall thickness will decrease the magnetization of steel pipe. It is observed that, at the speed of 8 m/s and the thickness of 15 mm, the magnetic field strength is lower than 2 kA/m and the steel pipe exits from the magnetic saturation zone, which causes the severe distortion of three-axis MFL signals, and the signal-to-noise ratio (SNR) is lower than 6 dB. A high-speed PIG is developed here for experiments to measure the three-axis MFL signals. The characteristics of simulated and measured MFL signals are found to be quite consistent.
机译:磁通泄漏(MFL)检查技术广泛用于管道行业,以检测缺陷以确保管道安全。在高速检查期间,在管道检查量表(猪)和钢管壁之间发生相对运动,将产生运动诱导的涡流(MIEC)。缺乏研究分析MIEC对厚壁钢管高速MFL检测的影响。在本文中,三维(3D)有限元方法(FEM)模拟,检测速度范围为0 m / s至8m / s,壁厚范围为8mm至15mm。仿真结果表明,高速检查和厚壁厚度都将降低钢管的磁化。观察到,在8 m / s的速度和15mm的厚度的速度下,磁场强度低于2ka / m,钢管从磁饱和区排出,这导致三个 - 轴MFL信号和信噪比(SNR)低于6 dB。这里开发出高速猪,用于测量三轴MFL信号的实验。发现模拟和测量的MFL信号的特性是相当一致的。

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