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Modeling and simulation of dissolution process of bulk carbide in Fe–1C–1.44Cr low-alloy steel

机译:Fe-1C-1.44CR低合金钢散装碳化物溶出过程的建模与仿真

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Because of the complex morphology of bulk carbides in the core of as-cast bearing steel, their dissolution process is complicated to model, since it is difficult to rationally simplify the bulk carbides using a simple geometric shape. In this study, a metallographic image of an actual bulk carbide is transformed into a two-dimensional physical model. A dissolution model for such bulk carbides is established using thermodynamic and kinetic methods, where the diffusion coefficients for carbon and chromium in austenite and the solute concentrations at the phase interface are calculated assuming local equilibrium conditions. The calculation results from the model are compared with the experimental values, after the bearing steel was soaked at 1150?°C, 1175?°C and 1200?°C, the difference between the measured area of bulk carbides in the core and the model calculation results was 65?μm2, 12?μm2and 30?μm2, respectively.
机译:由于铸造钢芯中的散装碳化物的复杂形貌,它们的溶解过程与模型复杂化,因为难以使用简单的几何形状来合理简化散装碳化物。在该研究中,将实际料碳化物的金相图像变为二维物理模型。使用热力学和动力学方法建立这种大量碳化物的溶出模型,其中奥氏体中碳和铬的扩散系数和相界面处的溶浓度的衍射系数是假设局部平衡条件的计算。将模型的计算结果与实验值进行比较,在轴承钢浸泡在1150℃,1175Ω°C和1200?°C之后,核心和模型中散装碳的测量区域之间的差异计算结果分别为65Ωμm2,12Ωμm2和30?μm2。

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