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Abstracts of the papers published in Tetsu-to-Hagane Vol. 101 (2015), No. 12

机译:Tetsu-to-Hagane卷上发表的论文摘要。 101(2015),第12号

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摘要

To clarify the effects of blowing a H_2-N_2 mixture onto the surface of molten steel containing various oxygen contents on the absorption reaction of nitrogen in the molten steel, experimental studies were carried out using a 20 kg induction furnace. Blowing of the H_2-N_2 mixture accelerates the nitrogen absorption rate because the oxygen concentration at the gas-metal interface is decreased by the reducing effect of the hydrogen gas. The apparent chemical reaction rate of nitrogen absorption in the present work was evaluated at almost the same reaction rate as that of desorption of nitrogen in previous works. Furthermore, a mathematical model for the nitrogen absorption and desorption reactions in a RH degasser was developed in order to estimate the contribution of each nitrogen reaction site during decarburization and killing treatment with injection of pure N_2 gas or the H_2-N_2 mixture in the molten steel. Using the mathematical model, it was estimated that a larger increase in the nitrogen concentration during decarburization treatment could be achieved by applying a 30% H_2-N_2 mixture to the injection gas in the RH degasser than by applying pure N_2 gas.
机译:为了阐明将H_2-N_2混合物吹到含各种氧含量的钢水表面上对钢水中氮吸收反应的影响,使用20 kg感应炉进行了实验研究。 H_2-N_2混合物的吹出加速了氮的吸收速率,因为气-金属界面处的氧浓度由于氢气的还原作用而降低。在与以前的研究中对氮的解吸几乎相同的反应速率下,评价了本研究中的氮吸收的表观化学反应速率。此外,建立了RH脱气机中氮吸收和解吸反应的数学模型,以估计在钢水中注入纯N_2气体或H_2-N_2混合物进行脱碳和镇静处理过程中每个氮反应部位的贡献。 。使用该数学模型,估计在脱碳处理过程中,通过向RH脱气机中的注入气体中添加30%的H_2-N_2混合物,可以比使用纯N_2气体实现更大的氮浓度增加。

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    《ISIJ international》 |2015年第12期|2703-2704|共2页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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