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Prediction of Phase Composition and Nitrogen Concentration During the Nitriding Process in Low-Alloy Steel

机译:低合金钢渗氮过程中相组成和氮浓度的预测

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A diffusion/transformation coupled model has been developed which combines finite difference (FD) model with a phenomenological model. The composition of the different iron-nitrogen(Fe-N) hardening phase can be regard as a function of nitriding time and nitrogen concentration. The diffusion model and transformation model are linked by the limiting nitrogen solubilities and the effective diffusion coefficients. The effect of alloy elements (Cr, Mo, Mn, V, Ni etc.) is considered by introducing an alloy coefficient for limiting nitrogen solubilities and diffusion coefficient. The diffusion/transformation model can predict nitrogen concentration, phase composition and hardness distribution. The model is employed to simulate the nitriding process of SCr420H low-alloy steels. The simulated nitrogen concentration and hardness profiles are consistent with the measured ones. In addition, the predicted depth distributions of iron-nitrogen phase agree well with the available experimental results. Therefore, the comparison shows the reliability of the coupled model. It can be applied to improve the nitriding process parameters.
机译:已经开发了将有限差分(FD)模型与现象学模型相结合的扩散/变换耦合模型。不同的铁-氮(Fe-N)硬化相的组成可以视为氮化时间和氮浓度的函数。扩散模型和转化模型通过极限氮溶解度和有效扩散系数联系在一起。通过引入合金系数来限制氮的溶解度和扩散系数,可以考虑合金元素(Cr,Mo,Mn,V,Ni等)的作用。扩散/转化模型可以预测氮浓度,相组成和硬度分布。该模型用于模拟SCr420H低合金钢的渗氮过程。模拟的氮浓度和硬度曲线与实测值一致。此外,铁-氮相的预测深度分布与可用的实验结果非常吻合。因此,比较显示了耦合模型的可靠性。可用于改善氮化工艺参数。

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