涡流效应在高速磁漏检测法中测速的可行性

Zhaoting Liu, Jianbo Wu, Sha He, Xin Rao, Shiqiang Wang, Shen Wang, Wei Wei
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引用次数: 0

摘要

众所周知,涡流效应对漏磁检测有很大的影响。通常采用接触式编码器轮来测量MFL测试速度,以评估效果并进一步补偿测试信号。这种速度测量方法比较复杂,不可避免的磨损和偶尔的打滑会降低测量精度。为了解决这一问题,提出了一种基于相对运动产生的涡流效应的无接触、简单的速度测量方法。在高速磁流变试验中,试样中产生的涡流会对外加磁场产生明显的影响。修正后的场由霍尔传感器测量,可以用来反映运动速度。首先,根据法拉第定律阐述了测量原理。在此基础上,进行了动态有限元模拟,研究了改进后的磁场分布。最后,通过实验验证了所提方法的可行性。结果表明,Bmz(r1)和Bmx(r2)与运动速度呈线性关系,可以作为备选测量参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Speed Measurement Feasibility by Eddy Current Effect in the High-Speed MFL Testing
It is known that eddy current effect has a great influence on magnetic flux leakage testing (MFL). Usually, contacttype encoder wheels are used to measure MFL testing speed to evaluate the effect and further compensate testing signals. This speed measurement method is complicated, and inevitable abrasion and occasional slippage will reduce the measurement accuracy. In order to solve this problem, based on eddy current effect due to the relative movement, a speed measurement method is proposed, which is contactless and simple. In the high-speed MFL testing, eddy current induced in the specimen will cause an obvious modification to the applied field. This modified field, which is measured by Hall sensor, can be utilized to reflect the moving speed. Firstly, the measurement principle is illustrated based on Faraday’s law. Then, dynamic finite element simulations are conducted to investigate the modified magnetic field distribution. Finally, laboratory experiments are performed to validate the feasibility of the proposed method. The results show that Bmz(r1) and Bmx(r2) have a linear relation with moving speed, which could be used as an alternative measurement parameter.
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