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首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >Theoretical Analysis and Numerical Simulation of the Feasibility of Inspecting Nonferromagnetic Conductors by an MFL Testing Apparatus
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Theoretical Analysis and Numerical Simulation of the Feasibility of Inspecting Nonferromagnetic Conductors by an MFL Testing Apparatus

机译:MFL检测装置检查非异磁导体的可行性的理论分析与数值模拟

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摘要

It has been widely accepted that the magnetic flux leakage (MFL) testing system can be applied only to the inspection of ferromagnetic materials. The possibility of using the MFL testing apparatus to inspect nonferromagnetic metals is discussed in this article. According to Faraday's law of induction, eddy current rises in the conductor passing through the MFL magnetizer. The perturbation of eddy current and its corresponding magnetic field caused by defects are theoretically analyzed. Then, the finite element method is carried out to verify the theoretical analyses and extract the perturbed magnetic field signals. Furthermore, the influences of specimen conductivity and moving velocity on the detection signal amplitude are also simulated. The results show that the nonferromagnetic conductors are possible to be inspected by the MFL apparatus, and higher conductivity or inspection speed will facilitate the inspection.
机译:已经普遍接受磁通泄漏(MFL)测试系统仅适用于铁磁性材料的检查。 本文讨论了使用MFL测试装置来检查无磁性金属的可能性。 根据Faraday的诱导定律,涡电流在通过MFL磁化器的导体中升起。 理论上分析了由缺陷引起的涡流的扰动及其相应的磁场。 然后,执行有限元方法以验证理论分析并提取扰动的磁场信号。 此外,还模拟了试样电导率和移动速度对检测信号幅度的影响。 结果表明,不使用的非磁导体可以通过MFL装置检查,并且较高的导电性或检查速度将有助于检查。

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