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Model Study on Behavior of Niobium in High Carbon Rare Earth Steel

机译:高碳稀土钢中铌行为的模型研究

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A coupling thermodynamic model which quantificationally described elements segregation and inclusions precipitation during solidification process of high carbon RE steel was proposed. According to the SEM and energy spectrum analysis, the model could completely consist with experiment results. Effects of mass fraction of niobium on the state of rare earth and niobium and constituents of inclusions during the solidification process of high carbon rare earth steel were studied. The results as follows:(1) Niobium carbide is gradually precipitated during solidification process. The content of solid niobium solution is rapidly increased at the late stage of solidification. With increasing mass fraction of carbon,concentration distribution of solid niobium solution is decreased at first and then increased.(2) With increasing mass fraction of niobium, both the temperature and content of niobium carbide precipitation are increased; the average precipitation content of solid niobium solution is gradually increased.(3) With increasing mass fraction of niobium, the content of solid RE solution, RE oxysulfide and nitride are increased, and the content of RES inclusion and RE aluminate are decreased.
机译:提出了一种耦合热力学模型,定量描述了高碳稀土钢凝固过程中元素的偏析和夹杂物的析出。通过SEM和能谱分析,该模型可以完全与实验结果吻合。研究了铌质量分数对高碳稀土钢凝固过程中稀土和铌状态及夹杂物成分的影响。结果表明:(1)碳化铌在凝固过程中逐渐析出。固态铌溶液的含量在凝固后期迅速增加。随着碳质量分数的增加,铌固溶体的浓度分布先减小后增大。(2)随着铌质量分数的增加,碳化铌析出物的温度和含量均增加。 (3)随着铌质量分数的增加,固体RE溶液,RE氧硫化物和氮化物的含量增加,RES夹杂物和RE铝酸盐的含量减少。

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