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Possibility of Application of Magnetoacoustic Emission for the Assessment of Plastic Deformation Level in Ferrous Materials

机译:应用磁声发射来评估黑色材料塑性变形水平的可能性

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摘要

The paper presents the results of an attempt to use the magnetoacoustic emission (MAE) signal for the nondestructive evaluation of plastic deformation levels in samples subjected to tensile loading. Four varied materials have been investigated: 13HMF, CSN12021 and P91 steels and commercially available Armco Iron. As it turned out various magnetic and magnetoacoustic properties of materials subjected to plastic tensile deformation behave in different ways for various materials, yet it is universally true that the steepness of the magnetic hysteresis loops decreases, thus leading to the increase in the separation of the “knee” portions of those loops. The MAE signal, being directly connected with the processes taking place for the magnetic field intensity at which those “knees” are observed (namely the 90$^{circ}$ domain wall creation/annihilation and movement) can be used for the detection of that increased separation. As a suitable parameter we propose either the MAE peak separation (if two maxima are visible) or the separation between the peaks obtained for increasing and decreasing magnetizing field. An important feature of those parameters is that in all the investigated materials we observe a monotonous increase of such separation.
机译:本文介绍了尝试将磁声发射(MAE)信号用于承受拉伸载荷的样品中塑性变形水平的非破坏性评估的结果。已经研究了四种不同的材料:13HMF,CSN12021和P91钢以及市售的Armco Iron。事实证明,经受各种材料的塑性拉伸变形后,材料的各种磁性和磁声特性以不同的方式表现出来,然而,普遍公认的是,磁滞回线的陡度减小,从而导致“磁滞回线”的分离度增加。这些循环的“膝盖”部分。 MAE信号与观察到这些“膝盖”的磁场强度发生的过程直接相关(即90 $ ^ {circ} $ 域壁的创建/ an灭和移动)可用于检测增加的间隔。作为合适的参数,我们建议采用MAE峰间距(如果可见两个最大值)或为增加和减小磁化场而获得的峰之间的间距。这些参数的重要特征是,在所有研究的材料中,我们观察到这种分离的单调增加。

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