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Inversion Method in Pulsed Eddy Current Testing for Wall Thickness of Ferromagnetic Pipes

机译:铁磁管壁厚脉冲涡流试验中的反转方法

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摘要

Based on time-domain analytical expression to pulsed eddy current field of a ferromagnetic pipe, a least squares inverse problem, between the calculated and measured values of induced voltage, is established to determine the wall thickness, conductivity, and relative permeability. And then, the coupling relationship among parameters in the inverse problem is investigated. Furthermore, the inverse problem is reestablished and the method for calculating the relative variation of wall thickness is proposed via taking the ratio of the inversion results between two testing points. Finally, the experiment results on a steel tube indicate that inversion results are independent on the initial value, and can effectively suppress the influence of the magnetic permeability variation, thus the reliability of the thickness testing get improved. Based on the above, a noncontact pulsed eddy current testing method is presented for measuring the relative wall thickness of ferromagnetic pipes. It can be used for nondestructive evaluation of wall-thinning corrosion of in-service coated ferromagnetic tube.
机译:基于时域分析表达到铁磁性管的脉动涡流场,建立了诱导电压的计算和测量值之间的最小二乘逆问题,以确定壁厚,导电性和相对渗透率。然后,研究了逆问题中参数之间的耦合关系。此外,通过采用两个测试点之间的反转结果的比率提出了用于计算壁厚的相对变化的逆问题。最后,在钢管上的实验结果表明反演结果是独立于初始值的,并且可以有效地抑制磁导率变化的影响,因此厚度测试的可靠性得到改善。基于上述,提出了一种非接触脉冲涡流测试方法,用于测量铁磁性管的相对壁厚。它可用于非破坏性评估壁薄涂覆铁磁管的薄壁稀释。

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