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A FUNDAMENTAL STUDY OF OXYGEN-MELT REACTIONS IN THE AOD PROCESS

机译:AOD过程中氧气熔解反应的基础研究

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摘要

Levitated drops of Fe-18%Cr-2%C were reacted with oxygen-argon mixtures to study the reactions that occur in the AOD process, where the gases are injected into the melt and form bubbles. In the laboratory an argon-oxygen pulse, followed by pure argon, was flowed past the levitated drop to simulate the transient conditions in the gas phase as the bubbles rise in the melt. Oxide layers formed on the drops immediately when they came into contact with gas pulses containing 75% or more oxygen. Once the oxygen flow had ceased, the oxides reacted with the carbon in the drops to form CO gas and eventually disappeared. The de-carburization reaction occurred without oxide formation when the gas contained 50% oxygen or less. Melts that were sampled after EAF tapping, ready to be charged into the AOD, showed a higher tendency to oxide formation and consequent carbon boil than pure ternary Fe-18%Cr-2%C alloys made in the laboratory. The actual steel samples contained significant impurities, such as 0.25% Si and 0.56% Mn. A similar effect of oxide-forming impurities had been observed previously with binary Fe-C alloys. Movies were taken of the oxide formation and decomposition, and the results will be presented, along with data on the experimental conditions, including temperature and oxide compositions. The results are important because they give an insight into the reaction mechanisms in the AOD, which must be understood in order to improve and model the process.
机译:使悬浮的Fe-18%Cr-2%C液滴与氧气-氩气混合物反应,以研究AOD过程中发生的反应,在该过程中,气体被注入熔体并形成气泡。在实验室中,氩氧脉冲,然后是纯氩,流过悬浮液滴,以模拟气泡中熔体上升时气相的瞬态条件。当液滴与包含75%或更多的氧气的气体脉冲接触时,会立即在液滴上形成氧化层。氧气停止流动后,氧化物与液滴中的碳反应形成CO气体,并最终消失。当气体包含50%或更少的氧气时,发生脱碳反应而没有形成氧化物。与实验室中生产的纯Fe-18%Cr-2%C三元纯Fe合金相比,EAF攻丝后准备装入AOD的熔体显示出更高的氧化物形成趋势和随之而来的碳沸腾趋势。实际的钢样品中含有大量杂质,例如0.25%的Si和0.56%的Mn。以前已经用二元Fe-C合金观察到了形成氧化物杂质的类似作用。拍摄了有关氧化物形成和分解的影片,并将显示结果以及实验条件的数据,包括温度和氧化物组成。结果很重要,因为它们可以深入了解AOD中的反应机理,必须加以理解才能改进和建模过程。

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