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Study on Experiment and Mechanism of Bottom Blowing CO_2 During the LF Refining Process

机译:LF精炼过程底吹CO_2的实验及机理研究。

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摘要

In order to explore the metallurgical behavior and mechanism of bottom blowing CO_2 in ladle furnace |LF), CO_2 was introduced in the LF refining process. The kinetics and thermodynamics of bottom blowing CO_2 were investigated and several mathematical models for kinetic study were established. Some exploratory industrial experiments have been conducted with different proportion of CO_2 in a 70 ton LF. The results indicated that it could lead to a little oxidation of elements in molten steel with the processing of bottom blowing CO_2 compared with Ar stirring. The average oxidation amount of C was in the range of 0.3-0.8 kg. The average oxidation amount of Mn was reduced by 0.0067% and the average oxidation of Al was increased by 0.003%, while the mass fraction of FeO was less than 0.5% in the slag hence it could meet requirements of reductive reaction. Mass transfer of CO in bubble interface or chemical reaction was the possible rate-determining step by comparing calculated results with experimental results. Compared with bottom blowing Ar, types and compositions of inclusions have no big change, plus, the equal yield density of inclusions has decreased and the cleanness of steel was improved. Therefore, it is possible to use CO_2 in LF.
机译:为了探索钢包炉底部吹炼CO_2的冶金行为和机理,在LF精炼过程中引入了CO_2。研究了底吹CO_2的动力学和热力学,建立了若干动力学研究数学模型。已经在70吨的LF中使用不同比例的CO_2进行了一些探索性工业实验。结果表明,与氩气搅拌相比,采用底吹CO_2处理可以减少钢水中元素的氧化。 C的平均氧化量为0.3〜0.8kg。 Mn的平均氧化量减少了0.0067%,Al的平均氧化增加了0.003%,而渣中FeO的质量分数小于0.5%,因此可以满足还原反应的要求。通过将计算结果与实验结果进行比较,可以确定二氧化碳在气泡界面或化学反应中的传质速率。与底部吹氩相比,夹杂物的种类和成分变化不大,而且夹杂物的等效屈服密度降低,钢的清洁度提高。因此,可以在LF中使用CO_2。

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