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首页> 外文期刊>Calphad: Computer Coupling of Phase Diagrams and Thermochemistry >Development of thermodynamic database for high Mn-high Al steels: Phase equilibria in the Fe-Mn-Al-C system by experiment and thermodynamic modeling
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Development of thermodynamic database for high Mn-high Al steels: Phase equilibria in the Fe-Mn-Al-C system by experiment and thermodynamic modeling

机译:高锰高铝钢热力学数据库的开发:Fe-Mn-Al-C体系中的相平衡通过实验和热力学建模

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Fe-Mn-Al-C system is a core system of high Mn-high Al steels for applications in automotive, cryogenic, electrical steels, etc. In order to provide an efficient tool for alloy/process design, a thermodynamic database of the quaternary system was developed in the present study by experimental phase diagram study coupled with CALPHAD type thermodynamic modeling. All stable phases relevant to steel matrix and precipitates including K-carbide and bcc_B2 (alpha') were considered in the modeling. High temperature equilibrated samples followed by an electron microscopy analysis showed that steel matrix of the austenite (gamma) was observed often to be in equilibrium with the K-carbide. Homogeneous region of the gamma enlarged by increasing Mn content up to 20 mass%, then shrinked by further increasing the Mn content up to 40 mass%. The phase diagram information experimentally determined in the present study and those reported in the literature were utilized in order to model Gibbs energies of the relevant phases. The Compound Energy Formalism (CEF) was used for each solid solution with proper consideration of its crystal structure. In particular, the K-carbide was modeled by a formula (Fe,Mn)(3)(Fe,Mn,Al)(1)(Va,C)(1) and alpha' was modeled by a formula (Fe,Mn,Al)(0.5)(Fe,Mn,Al)(0.5)(Va,C)(3) in order to take into account A2/B2 (alpha/alpha') 2nd order transition, as being important intermetallic precipitates. The Modified Quasichemcial Model in the pair approximation was employed for the liquid phase in order to take into account strong chemical interactions among components. The obtained Gibbs energy equations form a complete thermodynamic database for the Fe-Mn-Al-C system. It can be used to predict alloy phase equilibria of the system, and also can be a part of larger multicomponent steel database. (C) 2015 Elsevier Ltd. All rights reserved.
机译:Fe-Mn-Al-C系统是用于汽车,低温,电工钢等中的高Mn-高Al钢的核心系统。为了提供一种有效的合金/工艺设计工具,四元热力学数据库本系统是通过实验相图研究与CALPHAD型热力学建模相结合而开发的。在建模中考虑了与钢基质和包括K-碳化物和bcc_B2(alpha')在内的析出物有关的所有稳定相。高温平衡的样品,然后进行电子显微镜分析,结果表明,经常观察到奥氏体(γ)的钢基质与K碳化物处于平衡状态。 γ的均质区域通过将Mn含量增加至20质量%而扩大,然后通过进一步将Mn含量增加至40质量%而缩小。在本研究中实验确定的相图信息和文献中报道的相图信息被用来建模相关相的吉布斯能量。复合能量形式主义(CEF)用于每种固溶体,并适当考虑其晶体结构。尤其是,K碳化物由公式(Fe,Mn)(3)(Fe,Mn,Al)(1)(Va,C)(1)建模,而alpha'则由公式(Fe,Mn ,Al)(0.5)(Fe,Mn,Al)(0.5)(Va,C)(3),以便作为重要的金属间沉淀物考虑到A2 / B2(alpha / alpha')二阶过渡。为了考虑组分之间的强化学相互作用,在液相近似中采用了对近似的修正准化学模型。所获得的吉布斯能量方程形成了Fe-Mn-Al-C系统的完整热力学数据库。它可以用于预测系统的合金相平衡,也可以是较大的多组分钢数据库的一部分。 (C)2015 Elsevier Ltd.保留所有权利。

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