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The analysis of the redistribution of alloy elements during eutectic growth of high chromium cast iron by the use of thermo-calc

机译:利用热计算分析高铬铸铁共晶生长过程中合金元素的再分布

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The thermodynamic partition coefficients of Fe-Cr-Mo/V-C quaternary eutectic alloys obtained by numerical simulation were compared to the experimental values. It was found that the partition coefficients of Cr to primary γ, γ+M{sub}7C{sub}3 and γ+M{sub}3C eutectics are similar to k values of Cr to Fe-Cr-C eutectic alloy, so Mo and V have less influence on the k values of Cr. The thermodynamic k values of Mo to both carbides are less than unit. They decrease as Cr content becomes higher and they are in a good agreement with the experimental results. However, the thermodynamic k values of V are smaller than the experimental ones, and the thermodynamic k values to eutectic are less than unit, though the experimental k values are larger than unit. The redistribution of these elements during eutectic solidification was evaluated by the thermodynamic k values. The distribution of Mo in eutectic carbides and y agrees well with the experimental results. On the other hand, the distribution of V in eutectic γ and carbides shows different segregation tendency from the experimental result. When the modified database is used, the Thermo-Calc k values and the distribution of V during solidification are close to experimental results.
机译:将数值模拟得到的Fe-Cr-Mo / V-C四元共晶合金的热力学分配系数与实验值进行了比较。结果表明,Cr与原生γ,γ+ M {sub} 7C {sub} 3和γ+ M {sub} 3C共晶的分配系数与Cr对Fe-Cr-C低共熔合金的k值相似,因此Mo和V对Cr的k值影响较小。 Mo对两种碳化物的热力学k值均小于单位。随着Cr含量的增加,它们降低,并且与实验结果良好吻合。然而,尽管实验k值大于单位,但V的热力学k值小于实验值,并且对共晶的热力学k值小于单位。通过热力学k值评估在共晶凝固过程中这些元素的重新分布。 Mo在共晶碳化物中的分布和y与实验结果吻合良好。另一方面,V在共晶γ和碳化物中的分布与实验结果显示出不同的偏析趋势。使用修改后的数据库时,Thermo-Calc k值和凝固过程中的V分布接近实验结果。

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