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Axial Magnetic Field Sensing for Pulsed Magnetic Flux Leakage Hairline Crack Detection and Quantification

机译:脉冲磁通泄漏发际线裂纹检测和量化的轴向磁场感测

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The Magnetic Flux Leakage (MFL) testing method is a well-established branch of electromagnetic non-destructive testing technology extensively used to observe, analyze and estimate the level of imperfections (cracks, corrosions, pits, dents, etc.) affecting the quality of ferromagnetic steel structures. However the conventional MFL (DCMFL) method are not capable of estimating the defect sizes and orientation, hence an additional transducer is required to provide the extra information needed. This paper takes the detection and quantification of tangentially oriented rectangular surface and far-surface hairline cracks as the research objective. It uses an optimized pulsed magnetic flux leakage probe system to establish the location and geometries of such cracks. The results gathered from the approach show that data using the axial (B_x) field component can provide detailed locational information about hairline cracks especially the shape, size and orientation when positioned perpendicular to the applied field.
机译:磁通泄漏(MFL)测试方法是一种熟悉的电磁非破坏性测试技术分支,广泛用于观察,分析和估计影响质量的缺陷(裂缝,腐蚀,凹坑,凹痕等)的水平铁磁钢结构。然而,传统的MFL(DCMFL)方法不能估计缺陷尺寸和方向,因此需要另外的换能器来提供所需的额外信息。本文采用了切向定向的矩形表面和远面发际裂缝作为研究目标的检测和定量。它使用优化的脉冲磁通泄漏探头系统来建立这种裂缝的位置和几何形状。从方法收集的结果表明,使用轴向(B_X)场分量的数据可以提供关于发际裂缝的详细位置信息,特别是当垂直于所施加的场时的形状,尺寸和取向。

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