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首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >Modeling and Experimental Studies on 3D-Magnetic Flux Leakage Testing for Enhanced Flaw Detection in Carbon Steel Plates
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Modeling and Experimental Studies on 3D-Magnetic Flux Leakage Testing for Enhanced Flaw Detection in Carbon Steel Plates

机译:3D磁通泄漏试验的建模与实验研究,用于碳钢板增强探伤检测

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摘要

For enhanced detection of flaws in engineering components using magnetic flux leakage (MFL) technique, measurement of the leakage magnetic field components along the three perpendicular directions is beneficial. This article presents the three dimensional-magnetic flux leakage (3D-MFL) modeling and experimental studies carried out on carbon steel plates. Magnetic dipole model has been used for the prediction of MFL signals and images. Sensitivity of the MFL signals peak amplitudes of tangential (H-X), circumferential (H-Y), and normal (H-Z) components with respect to flaw length, width, depth and lift-off have been studied. A 3D-GMR sensor has been used for simultaneous measurement of all the three components of leakage magnetic fields from surface flaws in 12 mm thick carbon steel plates. The experimental MFL images have been compared with the model predicted MFL images. The sensor has shown the capability to detect and image 0.9 mm deep surface flaws with a signal to noise ratio of 8 dB. Principal component analysis (PCA)-based image fusion has been performed for fusion of the 3D-MFL images to obtain a geometrical profile of the flaws. Study reveals that 3D-GMR enhances the capability for detection of flaws having irregular geometries.
机译:为了使用磁通漏电(MFL)技术来增强工程部件中的缺陷的检测,沿着三个垂直方向的漏磁场分量的测量是有益的。本文介绍了在碳钢板上进行的三维磁通泄漏(3D-MFL)建模和实验研究。磁性偶极模型已被用于预测MFL信号和图像。研究了切向(H-X),周向(H-Y)和正常(H-Z)组分相对于缺陷,宽度,深度和剥离的峰值峰值峰值的敏感性。 3D-GMR传感器已用于同时测量来自12mm厚碳钢板中的表面缺损的泄漏磁场的所有三个部件。已经将实验MFL图像与模型预测的MFL图像进行了比较。传感器已经示出了以8dB的信噪比检测和图像0.9mm深表面缺陷的能力。已经执行了基于主成分分析(PCA)的图像融合,用于融合3D-MFL图像以获得缺陷的几何轮廓。研究表明,3D-GMR增强了检测具有不规则几何形状的缺陷的能力。

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