Coercivity and domain structure of nanograined Fe–C alloys after high-pressure torsion

被引:0
作者
Svetlana G. Protasova
Boris B. Straumal
Sergei V. Dobatkin
Dagmar Goll
Gisela Schütz
Brigitte Baretzky
Andrei A. Mazilkin
Alexei N. Nekrasov
机构
[1] Russian Academy of Sciences,Institute of Solid State Physics
[2] Max-Planck-Institut für Metallforschung,A.A. Baikov Institute of Metallurgy and Materials Science
[3] Russian Academy of Sciences,Institute of Experimental Mineralogy
[4] Russian Academy of Sciences,undefined
来源
Journal of Materials Science | 2008年 / 43卷
关键词
Ferrite; Austenite; Domain Wall; Cementite; Carbon Concentration;
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中图分类号
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摘要
The microstructure and magnetic properties of binary hypo- and hyper-eutectoid Fe–C alloys were studied. The investigations have been carried out on the samples in the as-cast state, after a long annealing at 725 °C and on the specimens after the high-pressure torsion (HPT). The deformation was carried out at the ambient temperature and the pressure of 5 GPa. The grain size after HPT is in the nanometer range. Long annealing leads to a drastic decrease of the coercivity in comparison with the as-cast alloys. In all alloys the coercivity Hc increases with increasing carbon content. The distance L between pinning points for domain walls decreases with increasing carbon content. Increase of the coercivity and decrease of L are more pronounced below the eutectoid concentration. The coercivity of the nanostructured samples is higher than that of the as-cast alloys. Due to the pinning of domain walls by the cementite particles, the hysteresis loop in the coarse-grained alloys both in as-cast and annealed states has a narrowing near the zero magnetization.
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页码:3775 / 3781
页数:6
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