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Evaluation of a Magnetic Dipole Model in a DC Magnetic Flux Leakage System

机译:直流漏磁系统中磁偶极子模型的评估

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摘要

One of the most common methods for performing non-destructive testing in steel tank floors is DC magnetic flux leakage (MFL). The magnetic dipole method is the most widely used mathematical technique to predict the MFL from defects in such structures. However, due to the complexity of an exact analytical description of an MFL system, researchers often make coarse approximations for the profile of the magnetic surface charge density sigma(m), orientation of the magnetic field H, and variation of relative permeability mu(r). In this paper, the validity of these approximations is evaluated for 2-D rectangular defects in a steel plate, by comparing model predications with finite element results. The primary sources of deviation between the approximate solutions and true MFL profiles were found to be caused by assumptions that 1) sigma(m) on the specimen surface adjacent to a flaw is zero. This assumption is equivalent to treating the orientation of H to be parallel to the specimen surface, even at locations in close proximity to a flaw and 2) local variation in permeability around the defect can be ignored. This approximation was found to cause an underestimation of sigma(m) and, consequently, the predicted MFL. In contrast, approximating sigma(m) to be zero at the bottom of a flaw, and approximating uniform distribution for sigma(m) on the vertical defect sides of a slot defect was found to generate only minor errors in an estimate of flux leakage.
机译:在钢制储罐底板中执行无损检测的最常见方法之一是直流磁通泄漏(MFL)。磁偶极子方法是从此类结构中的缺陷预测MFL的最广泛使用的数学技术。但是,由于对MFL系统进行精确的分析描述的复杂性,研究人员经常对磁表面电荷密度sigma(m)的分布,磁场H的方向以及相对磁导率mu(r)的变化进行粗略近似。 )。在本文中,通过将模型预测与有限元结果进行比较,评估了这些近似方法对于钢板中二维矩形缺陷的有效性。发现近似解与真实MFL轮廓之间的偏差的主要来源是由以下假设引起的:1)与缺陷相邻的试样表面上的sigma(m)为零。该假设等效于将H的方向与试样表面平行,即使在靠近缺陷的位置,也可以将其视为平行; 2)可以忽略缺陷周围的渗透率局部变化。发现这种近似会导致sigma(m)的低估,并因此导致预测的MFL的低估。相反,发现在缺陷的底部将sigma(m)近似为零,并且在缝隙缺陷的垂直缺陷侧上将sigma(m)近似均匀分布只会在磁通泄漏估计中产生较小的误差。

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