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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Influence of high magnetic field on ferrite transformation in Fe-C base alloys
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Influence of high magnetic field on ferrite transformation in Fe-C base alloys

机译:强磁场对Fe-C基合金中铁素体相变的影响

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The characteristics and the mechanism of ferrite transformation in alloy steels which contain a carbide-forming element have attracted considerable attention for past decades. Since it is reported that the nucleation and growth of ferrite in Fe-C base alloys is accelerated by high magnetic field, the influence of a magnetic field of 12 Tesla on ferrite transformation was studied in a Fe-C- Mo alloy. Whereas a significant amount of expedition was observed at lower temperatures, the principal features of ferrite transformation, namely, a marked retardation of transformation at intermediate temperatures and premature cessation of transformation before it reaches the final equilibrium amount below the bay temperature were essentially retained. In contrast, the influence of magnetic field was much less at higher temperatures. These results are discussed in terms of the influence of magnetic field on the phase equilibrium and coupled-solute drag effects on the migration α/γ phase boundary.
机译:在过去的几十年中,含有碳化物形成元素的合金钢中铁素体转变的特性和机理引起了相当大的关注。由于据报道,强磁场加速了Fe-C基合金中铁素体的形核和生长,因此研究了12 Tesla磁场对Fe-C-Mo合金中铁素体相变的影响。尽管在较低的温度下观察到大量的探险,但铁氧体转变的主要特征,即在中间温度下明显的转变延迟和在达到海湾温度以下的最终平衡量之前过早停止转变。相反,在较高温度下磁场的影响要小得多。讨论了磁场对相平衡的影响以及溶质对迁移相α/γ边界的耦合溶质拖曳效应的影响。

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