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Study on mechanism of oxygen increase and countermeasure to control oxygen content during electroslag remelting process

机译:电渣重熔过程中增氧机理及控制氧含量的对策研究

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This study analyses the mechanism of oxygen increase during the electroslag remelting (ESR) process and proposes a countermeasure to control oxygen content of electroslag ingots. The results show that when the oxygen in the electrode is high, the oxygen in the ingots decreases after the ESR process. However, when the oxygen in the electrode is low, the oxygen in the ingots increases after the ESR process. Oxygen increase is closely related to the slag system that was used during the process. According to the experiment and the theoretical analysis, the [AI]-[0] reaction is the control reaction, and the oxygen content of the ingots is determined by the Al_2O_3 activity in the slag pool when Al in the electrode is kept constant. Based on this finding, the new slag system that decreases the oxygen content of the electroslag ingot is designed and it contains the following components: 63-67%CaF_2, 4-6%Al_20_3, 18-22%CaO, 8-12%RE_xO_y or 43-47%CaF_2, 4-6%Al_2O_3, 18-22%CaO, 8-12%MgO and 18-22%RE_xO_y.
机译:该研究分析了电渣重熔(ESR)过程中氧气增加的机理,并提出了控制电渣锭中氧含量的对策。结果表明,当电极中的氧气较高时,ESR工艺后铸锭中的氧气会减少。然而,当电极中的氧气低时,在ESR工艺之后,铸锭中的氧气会增加。氧气增加与过程中使用的炉渣系统密切相关。根据实验和理论分析,[AI]-[0]反应为控制反应,当电极中的Al保持恒定时,铸锭的氧含量由渣池中的Al_2O_3活性决定。基于此发现,设计了一种可降低电渣锭中氧含量的新型炉渣系统,该炉渣系统包含以下成分:63-67%CaF_2、4-6%Al_20_3、18-22%CaO,8-12%RE_xO_y或43-47%CaF_2、4-6%Al_2O_3、18-22%CaO,8-12%MgO和18-22%RE_xO_y。

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