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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Magnetic anisotropy of plastically deformed low-carbon steel
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Magnetic anisotropy of plastically deformed low-carbon steel

机译:塑性变形低碳钢的磁各向异性

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摘要

Macroscopic hysteresis and local Barkhausen noise techniques were used for the comprehensive magnetic investigation of structural low-carbon steel subjected to uniaxial plastic tension. Scattering of the measured magnetic parameters was substantial within the Lüders band region with stabilization at higher strains. Compressive residual stresses in the deformation direction formed a hard magnetization axis with intriguing two-phase remagnetization. The magnetic parameters had the highest sensitivity to strain in this direction. They changed as cos~2 with rotation to the perpendicular easy magnetization axis, where the magnetic sensitivity was the lowest. The relation between the deformed steel microstructure (dislocation and residual stress patterns) and the obtained magnetic behaviour is interpreted. The applicability of the examined techniques for the non-destructive characterization of steel degradation is discussed.
机译:宏观磁滞和局部巴克豪森噪声技术被用于对结构性低碳钢进行单轴塑性拉伸的综合磁性研究。测得的磁参数在Lüders带区域内的散射很大,并在较高应变下稳定。沿变形方向的压缩残余应力形成了有趣的两相磁化强度的硬磁化轴。磁参数在该方向上对应变的敏感性最高。随着旋转到垂直易磁化轴,它们以cos〜2的形式变化,其中磁灵敏度最低。解释了钢的变形组织(位错和残余应力模式)与所获得的磁行为之间的关系。讨论了所检验技术对钢降解的非破坏性表征的适用性。

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