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Annealing and torsion stress effect on magnetic anisotropy and magnetostriction of Vicalloy fine wire

机译:退火和扭转应力对Vicalloy细线的磁各向异性和磁致伸缩的影响

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摘要

A twisted semi-hard magnetic wire of Vicalloy with composition of Fe/sub 41/Co/sub 48/V/sub 11/ revealed remarkable uniaxial magnetic anisotropy along central axis direction of the wire and showed a difference in coercivity between outer shell and inner core of the wire. Also the wire remained the large torsion stress enough to generate the large Barkhausen jump. The magnitude of the jump depends strongly on the magnetic characteristics, such as magnetic anisotropy and magnetostriction constants, which may be varied with change of annealing treatment and torsion stress. In this study, the causes of large Barkhausen jump induced due to the stress remained by dice drawing process was investigated. As a result, it was found that the pulse voltage induced in the wire was in proportion to logarithmic two power of reduction.
机译:组成为Fe / sub 41 / Co / sub 48 / V / sub 11 /的Vicalloy双绞半硬磁线沿线的中心轴方向显示出显着的单轴磁各向异性,并且外壳与内壳之间的矫顽力有所不同线芯。而且,钢丝仍然具有足够大的扭转应力,足以产生大的巴克豪森跳动。跳跃的幅度强烈地取决于磁特性,例如磁各向异性和磁致伸缩常数,其可以随着退火处理和扭转应力的变化而变化。在这项研究中,调查了由于拉丝过程中残留的应力而导致大巴克豪森跳跃的原因。结果发现,在导线中感应的脉冲电压与对数二次减小功率成比例。

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