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High-Speed MFL Method Based on Multistage Magnetization Structure

机译:基于多级磁化结构的高速MFL方法

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In the process of magnetic flux leakage (MFL) testing, the leakage magnetic field decreases as the testing velocity increases, which leads to the severe detection omission. To address this issue, factors affecting high-speed magnetic flux leakage testing are analyzed, multistage magnetization structure is then proposed. By comparing magnetic flux leakage signals characteristics on the surface of steel pipe with high speed and low speed, effectiveness and feasibility of multistage magnetization structure are analyzed. Results show that multistage magnetization structure can effectively extend magnetization time. Compared with single magnetization, the magnetic flux leakage signal of the inner wall of the steel pipe can be detected effectively with multistage magnetization structure at high speed, and the magnetic flux leakage testing precision is improved.
机译:在磁通泄漏(MFL)测试的过程中,随着测试速度的增加而降低漏磁场,这导致严重的检测遗漏。为了解决这个问题,分析了影响高速磁通量泄漏测试的因素,然后提出了多级磁化结构。通过将钢管表面上的磁通泄漏信号特性进行了比较,分析了多级磁化结构的高速,有效性和可行性。结果表明,多级磁化结构可以有效地延长磁化时间。与单磁化相比,钢管的内壁的磁通漏信号可以有效地检测,高速,磁通漏电检测精度得到改善。

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