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Numerical Simulation on Magnetic Flux Leakage Evaluation at High Speed

机译:高速磁通量泄漏评价的数值模拟

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High-speed non-destructive inspection (NDI) systems using magnetic flux leakage method (MFL) is in great demand in online metal inspection and defect characterisation, especially in pipeline and rail track inspection. For MFL systems at high speed measurement, in addition to magnetic flux, eddy currents exist in metal specimen because of the relative movement between the probe and specimen. These currents alter the profile of electromagnetic field, which increases difficulty in signal interpretation and defect characterization. In this paper, eddy currents generated by high speed movement and their characterisation in high-speed MFL inspection systems were investigated by using numerical simulations. Besides, the MFL signals from high speed MFL measurement against defect depth were examined.
机译:使用磁通泄漏法(MFL)的高速无损检测(NDI)系统在在线金属检查和缺陷表征方面具有很大的需求,特别是在管道和轨道轨道检查中。对于高速测量的MFL系统,除了磁通量之外,由于探头和样本之间的相对运动,金属样品中存在涡流。这些电流改变了电磁场的轮廓,这增加了信号解释和缺陷表征的难度。本文通过使用数值模拟研究了高速运动产生的涡流及其在高速MFL检查系统中的表征。此外,研究了来自高速MFL测量的MFL信号抵抗缺陷深度。

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