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Non-destructive Flaw Mapping of Steel Surfaces by the Continuous Magnetic Barkhausen Noise Method: Detection of Plastic Deformation

机译:连续磁性Barkhausen噪声法的钢表面的非破坏性缺陷映射:塑性变形检测

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摘要

This paper reports the use of a non-destructive scanning technique to identify plastic deformation defects generated in steel. The technique is based on measurement of continuous magnetic Barkhausen noise (CMBN). In the experiments described here, surfaces with plastic deformations produced by crushing stresses in a 1070 steel are scanned, and the influence of probe configuration, coil type, scanner speed, applied magnetic field and the frequency band used for the analysis on the effectiveness of the technique is studied. A moving smoothing window based on a second order statistical moment is used to analyze the time signal. The results show that the method can detect the position of plastic deformation defects and distinguish between their amplitudes.
机译:本文报道了使用非破坏性扫描技术来识别钢中产生的塑性变形缺陷。 该技术基于对连续磁性巴克胡森噪声(CMBN)的测量。 在这里描述的实验中,扫描通过粉碎1070钢中的应力产生的塑性变形的表面,以及探针配置,线圈类型,扫描仪速度,施加的磁场和用于分析效果的频段的影响 技术研究。 基于二阶统计时刻的移动平滑窗口用于分析时间信号。 结果表明,该方法可以检测塑性变形缺陷的位置并区分其幅度。

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