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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Coupling Binary and Ternary Information in Assessing the Fcc/Hcp Relative Phase Stability and Martensitic Transformation in Fe-Mn-Co and Fe-Mn-Si Alloys
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Coupling Binary and Ternary Information in Assessing the Fcc/Hcp Relative Phase Stability and Martensitic Transformation in Fe-Mn-Co and Fe-Mn-Si Alloys

机译:评估Fe-Mn-Co和Fe-Mn-Si合金中Fcc / Hcp相对相稳定性和马氏体转变的二元和三元信息耦合

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This paper presents a study of the composition dependence of the fec/hep martensitic transformation temperatures and relative phase stability of these structures in Fe-Mn-Co and Fe-Mn-Si alloys. The approach combines new experimental determinations of Ms and As in the binary systems Fe-Mn and Fe-Co, and in both ternary systems with a critical analysis of the previously published experimental data, and thermodynamic calculations. It is shown how this combination of binary and ternary information with various methods of analysis can be used to establish the T0-temperarures in the Fe-Mn-Co system and to refine the thermodynamic description of the metastable hep structure of the Fe-Co system. The present methods also help to detect possible inconsistencies in the previously reported Ms and As data for Fe-Mn-Si alloys, which is used as a basis for discussing the most recent calculation of Ms temperatures in this system.
机译:本文研究了Fe / Mn-Co和Fe-Mn-Si合金中fec / hep马氏体转变温度的成分依赖性以及这些结构的相对相稳定性。该方法结合了二元体系Fe-Mn和Fe-Co中以及两种三元体系中Ms和As的新实验测定结果,并对先前发布的实验数据进行了严格分析,并进行了热力学计算。显示了如何将二元和三元信息与各种分析方法结合使用,以建立Fe-Mn-Co系统中的T0温度,并完善Fe-Co系统的亚稳态Hep结构的热力学描述。 。本方法还有助于检测先前报道的Fe-Mn-Si合金的Ms和As数据中可能存在的不一致性,这些数据被用作讨论该系统中Ms温度最新计算的基础。

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