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Simulation and experimental study on MFL-based damage detection capability considering velocity condition for railroad NDE

机译:考虑铁路NDE速度条件的MFL基损伤检测能力的仿真与实验研究

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This paper used a magnetic flux leakage (MFL) method compatible with steel structures to analyze quantitative change in a leakage signal due to defects on the surface of a railroad. A numerical simulation using a two-dimensional finite element method (2D-FEM) was used to analyze MFL signals from defects on the railroad. An experiment was then carried out to investigate the capability of the MFL-based non-destructive evaluation (NDE). We also focused on the velocity effect of the MFL signals by analyzing the magnetic hysteresis phenomenon. The quantitative change in leakage signals was determined by selecting depth of the defect and inspection velocity as parameters in a simulation and in an experiment. The MFL signals obtained showed variations that were simultaneously affected by inspection velocity and defect depth. MFL-based damage detection in a railroad is conclusively confirmed to be sufficiently feasible within the range of operational speeds of an inspection train.
机译:本文采用磁通泄漏(MFL)方法与钢结构兼容,以分析由于铁路表面的缺陷引起的泄漏信号中的定量变化。 使用二维有限元方法(2D-FEM)的数值模拟用于分析来自铁路上的缺陷的MFL信号。 然后进行实验以研究基于MFL的非破坏性评价(NDE)的能力。 我们还通过分析磁滞现象来专注于MFL信号的速度效应。 通过在模拟和实验中选择缺陷和检查速度作为参数来选择缺陷和检查速度的深度来确定漏信号的定量变化。 获得的MFL信号显示出通过检查速度和缺陷深度而同时影响的变化。 铁路中基于MFL的损伤检测被确认在检查火车的操作速度范围内是足够的可行性。

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