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Time-Response-Histogram-Based Feature of Magnetic Barkhausen Noise for Material Characterization Considering Influences of Grain and Grain Boundary under In Situ Tensile Test

机译:考虑原位拉伸试验下谷物和晶界影响的材料表征的磁性巴克豪森噪声的基于时间响应直方图的特征

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摘要

Stress is the crucial factor of ferromagnetic material failure origin. However, the nondestructive test methods to analyze the ferromagnetic material properties’ inhomogeneity on the microscopic scale with stress have not been obtained so far. In this study, magnetic Barkhausen noise (MBN) signals on different silicon steel sheet locations under in situ tensile tests were detected by a high-spatial-resolution magnetic probe. The domain-wall (DW) motion, grain, and grain boundary were detected using a magneto-optical Kerr (MOKE) image. The time characteristic of DW motion and MBN signals on different locations was varied during elastic deformation. Therefore, a time-response histogram is proposed in this work to show different DW motions inside the grain and around the grain boundary under low tensile stress. In order to separate the variation of magnetic properties affected by the grain and grain boundary under low tensile stress corresponding to MBN excitation, time-division was carried out to extract the root-mean-square (RMS), mean, and peak in the optimized time interval. The time-response histogram of MBN evaluated the silicon steel sheet’s inhomogeneous material properties, and provided a theoretical and experimental reference for ferromagnetic material properties under stress.
机译:压力是铁磁性失效起源的关键因素。然而,到目前为止,迄今为止,尚未获得利用压力的微观尺度对微观尺度的铁磁材料特性的非破坏性试验方法。在本研究中,通过高空间分辨率的磁探针检测在原位拉伸试验下的不同硅钢板位置上的磁性Barkhausen噪声(MBN)信号。使用磁光kerr(moke)图像检测畴壁(dw)运动,谷物和晶粒边界。在弹性变形期间,在不同位置上的DW运动和MBN信号的时间特性变化。因此,在该工作中提出了一种时间响应直方图,以在低拉应力下显示晶粒内部和晶界周围的不同DW运动。为了将受晶粒和晶界影响的磁性变化在对应于MBN激发的低拉应力下,进行时分以提取优化的根均方(RMS),平均值和峰值时间间隔。 MBN的时响应直方图评估了硅钢板的不均匀材料特性,并为胁迫下的铁磁性材料特性提供了理论和实验参考。

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