3D Reconstructing of Arbitrary Defects with Magnetic Flux Leakage Testing Signals

Hong-mei Li, Ran-Ran Huang, Chunping Zhao, Jia Yan, Yu Wang
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引用次数: 2

Abstract

By detecting and processing the Magnetic Flux Leakage (MFL) signals to identify and estimate the defects in ferromagnetic materials or structures, for example, in the steel pipelines, the so called Magnetic Flux Leakage Testing (MFLT) technology has been widely used in industry. However, the existing MFLT technology is suitable for locating the defects and rough estimating their sizes based on enormous sample data, incapable to image their Three-Dimensional (3D) shapes and precise estimate their sizes, while the physical model associating the defect geometry details and the MFL signals were still unclear. In this study, (1) the effects of an actual 3D defect are taken into account by introducing a new concept, Depth Field over a surface, i.e., a matrix of loss of material on the testing surface of a structure; (2) the governing equations for the depth field and the MFL signals are derived; (3) an algorithm to reconstruct the 3D defect or the depth field based on the governing equations is developed. This new method does not require huge amount of pulling-test data for calibration purpose as the existing MFLT technology used in industry, and it has been verified via a series of tests with various defects of different shapes in pipelines, the results indicate it is valid for 3D defect reconstruction with high accuracy.
基于漏磁检测信号的任意缺陷三维重建
漏磁检测(MFLT)技术通过对漏磁信号进行检测和处理,以识别和估计铁磁性材料或结构(如钢管)的缺陷,在工业上得到了广泛应用。然而,现有的MFLT技术仅适用于基于海量样本数据的缺陷定位和尺寸粗略估计,无法对缺陷进行三维形状成像和尺寸精确估计,缺陷几何细节与MFLT信号之间的物理模型尚不清晰。在本研究中,(1)通过引入一个新概念,即表面上的深度场,即结构测试表面上的材料损失矩阵,来考虑实际三维缺陷的影响;(2)推导了深场和磁漏信号的控制方程;(3)提出了一种基于控制方程的三维缺陷或深度场重构算法。该方法不像工业上使用的MFLT技术那样需要大量的拉测数据进行校准,并通过对管道中不同形状的各种缺陷进行了一系列试验验证,结果表明该方法可用于高精度的三维缺陷重建。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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