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Modelling and experimental study of a multi-frequency electromagnetic sensor system for rail decarburisation measurement

机译:铁路脱碳测量多频电磁传感系统的建模与实验研究

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摘要

This paper presents a modeling and experimental study using a multi-frequency electromagnetic (EM) sensor system, for non-destructive evaluation of rail decarburisation. The EM sensor is configured with a H-shaped ferrite core, which was excited with a multi-frequency waveform over the range of approximately 1 kHz to 100 kHz. Finite-element (FE) simulation was carried out to establish the link between the EM sensor output and the level of decarburization. Rail samples with different levels of decarburisation, due to different bloom reheat times prior to rolling were tested in the laboratory. It was found that the zero-crossing frequency of the EM sensor response is linearly proportional to the decarburisation level by FE simulation, theoretic analysis and experiment. This finding is helpful in understanding the response of the EM sensor to rail decarburisation and could lead to a non-contact, non destructive method for use during rail manufacturing. In addition, on-site measurement (tests carried out in the Rail & Section Mill at Tata Steel) was taken on a 110 m long rail product, with the results indicating that the EM sensor response correctly follows the expected decarburisation profile along the rail length.
机译:本文介绍了一种使用多频电磁(EM)传感器系统进行的建模和实验研究,用于铁路脱碳的无损评估。 EM传感器配置有一个H形铁氧体磁心,该磁心被一个大约1 kHz至100 kHz范围内的多频率波形激励。进行了有限元(FE)模拟,以建立EM传感器输出与脱碳水平之间的联系。在实验室测试了由于轧制之前的大方坯再热时间不同而导致脱碳水平不同的钢轨样品。通过有限元模拟,理论分析和实验,发现EM传感器响应的过零频率与脱碳水平成线性比例关系。该发现有助于理解EM传感器对钢轨脱碳的响应,并可能导致在钢轨制造过程中使用非接触,无损的方法。此外,还对110 m长的钢轨产品进行了现场测量(在Tata Steel的钢轨和型钢轧机上进行的测试),结果表明EM传感器的响应正确地沿着钢轨的长度遵循了预期的脱碳曲线。

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