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Analysis of the γ → α transformation in a C-Mn steel by phase-field modeling

机译:用相场模型分析C-Mn钢中的γ→α转变

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摘要

This article deals with the austenite (γ) decomposition to ferrite (α) during cooling of a 0.10 wt pct C-0.49 wt pct Mn steel. A phase-field model is used to simulate this transformation. The model provides qualitative information on the microstructure that develops on cooling and quantitative data on both the ferrite fraction formed and the carbon concentration profile in the remaining austenite. The initial austenitic microstructure and the ferrite nucleation data, derived by metallographic examination and dilatometry, are set as input data of the model. The interface mobility is used as a fitting parameter to optimize the agreement between the simulated and experimental ferrite-fraction curve derived by dilatometry. A good agreement between the simulated α-γ microstructure and the actual α-pearlite microstructure observed after cooling is obtained. The derived carbon distribution in austenite during transformation provides comprehension of the nature of the transformation with respect to the interface-controlled or diffusion-controlled mode. It is found that, at the initial stage, the transformation is predominantly interface-controlled, but, gradually, a shift toward diffusion control takes place to a degree that depends on cooling rate.
机译:本文涉及在0.10 wt%C-0.49 wt%Mn钢冷却过程中奥氏体(γ)分解为铁素体(α)的问题。相场模型用于模拟此转换。该模型提供了有关冷却的微观结构的定性信息,并提供了有关形成的铁素体分数和剩余奥氏体中碳浓度分布的定量数据。通过金相检查和膨胀法得出的初始奥氏体显微组织和铁素体成核数据被设置为模型的输入数据。界面迁移率用作拟合参数,以优化通过膨胀法得出的模拟和实验铁素体分数曲线之间的一致性。冷却后观察到的模拟α-γ微观结构与实际α-珠光体微观结构之间具有良好的一致性。在相变过程中,奥氏体中的碳分布可提供关于界面控制或扩散控制模式的相变性质。已经发现,在初始阶段,转变主要受界面控制,但是逐渐地,向扩散控制的转变发生在一定程度上取决于冷却速率。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第9期|2327-2340|共14页
  • 作者单位

    the Netherlands Institute for Metals Research Rotterdamseweg 137 2628 AL Delft The Netherlands;

    the Department of Materials Science and Engineering Delft University of Technology Rotterdamseweg 137 2628 AL Delft The Netherlands;

    the Faculty of Aerospace Engineering Delft University of Technology Kluyverweg 1 2629 HS Delft The Netherlands;

    Access eV Intzestasse 5 D-52072 Aachen Germany;

    Access eV Intzestasse 5 D-52072 Aachen Germany;

    Access eV Intzestasse 5 D-52072 Aachen Germany;

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  • 正文语种 eng
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