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Transformation character of ferrite formation by a ledge mechanism under a mixed-control model

机译:混合控制模型下壁架机构转变铁氧体形成特征

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A mixed-control model was developed to study the transformation character of ferrite formation by a ledge mechanism. A numerical two-dimensional diffusion-field model was combined to describe the evolution of the diffusion field ahead of the migrating austen-ite/ferrite interface. The calculation results show that the bulk diffusion-controlled model leads to a deviation from experimental results under large solute supersaturation. In the mixed-control model, solute supersaturation and a parameter Z together determine the transformation character, which is quantified by the normalized concentration of carbon in austenite at the austenite/ferrite interface. By comparing with experimental data, the pre-exponential factor of interface mobility, M_0, is estimated within the range from 0.10 to 0.60 mol-m-J~(-1)-s~(-1) for the alloys with 0.1 lwt%-0.49wt% C at 700-740°C. For a certain Fe-C alloy, the trend of the transformation character relies on the magnitude of M_0 as the transformation temperature decreases.
机译:开发了一种混合控制模型以研究壁架机构的铁氧体形成的转化特征。组合数值二维扩散场模型以描述迁移奥斯汀/铁氧体界面前方的扩散场的演变。计算结果表明,散装扩散控制模型导致在大溶质过饱和下与实验结果的偏差。在混合控制模型中,溶质过饱和度和参数Z在一起确定转化特征,其通过奥氏体/铁氧体界面处的奥氏体中的碳的归一化浓度量化。通过与实验数据进行比较,界面迁移率M_0的预指数因子M_0估计在0.1LWT%-0.49的合金的0.10至0.60mol-MJ〜(-1)〜(-1)的范围内WT%C为700-740°C。对于某个Fe-C合金,随着变换温度降低,转换特征的趋势依赖于M_0的大小。

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