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On the role of residual internal stresses and dislocations on Barkhausen noise in plastically deformed steel

机译:残余内应力和位错对塑性变形钢中巴克豪森噪声的作用

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The dependence of Barkhausen noise on elastic and plastic deformations, achieved in tension and in compression, has been investigated both in Armco iron and a low carbon steel. These materials exhibit quite different behaviours, especially with regard to the effect of plastic deformation: a tensile plastic deformation (> 1 percent) induces a marked increase in Barkhausen noise for Armco iron while it induces a steep decrease in the low carbon steel. The comparison between the tensile and compressive behaviours, as well as between the elastic and plastic regimes of deformation enables us to attribute these effects to two underlying mechanisms, i.e. effect of residual internal stresses through magneto-elastic coupling and dislocation-domain wall interaction. In Armco iron, the latter mechanism seems to have the strongest influence on the Barkhausen noise, while in the low carbon steel the influence of residual internal stresses prevails.
机译:在Armco铁和低碳钢中都研究了Barkhausen噪声对在拉伸和压缩中实现的弹性和塑性变形的依赖性。这些材料表现出截然不同的行为,特别是在塑性变形的影响方面:拉伸塑性变形(> 1%)使Armco铁的Barkhausen噪声明显增加,而引起低碳钢的急剧下降。拉伸和压缩行为之间的比较以及弹性和塑性变形形式之间的比较使我们能够将这些影响归因于两个基本机制,即通过磁弹耦合和位错域壁相互作用而产生的残余内应力的影响。在Armco铁中,后一种机制似乎对Barkhausen噪声的影响最大,而在低碳钢中,残余内应力的影响普遍存在。

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