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A Mathematical Model of Desulphurization Kinetics for Ultra-low-sulfur Steels Refining by Powder Injection during RH Processing

机译:RH加工中喷粉精炼超低硫钢脱硫动力学的数学模型

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摘要

A mathematical model about the variation of sulphur content in liquid steel during a 300 t RH refining process was established based on the consideration of thermodynamics, kinetics of desulphurization and conditions of practical production. The effect of initial sulphur content in the top slag on the ration of contribution of transitory desulphurization reaction in total desulphurization was included. The effects of initial sulphur content in the liquid steel, powder injection rate, particle size of powder, flow rate of RH driving gas and initial temperature of the bath on the temperature drop were taken into account. Sulphur content in the steel bath during desulphurization process and the final sulphur content in the liquid steel were analyzed. The lowest sulphur content can decrease to 10 ppm from 30 ppm by taking reasonable injection operating conditions to treat 10 min. The simulated results of sulfur removal rate and final sulphur content in liquid steel agree well with that of plant production under the same conditions, which indicates that the present model can be used to predict desulphurization process. The simulated results also show that powder injection desulphurization has better desulphurization efficiency compared with adding desulphurization agent simply onto the top of molten steel in the vacuum vessel in the practical production process.
机译:基于热力学,脱硫动力学和实际生产条件,建立了300 t RH精炼过程中钢液中硫含量变化的数学模型。包括了炉顶渣中初始硫含量对瞬时脱硫反应在总脱硫中的贡献率的影响。考虑了钢液中初始硫含量,粉末注入速率,粉末粒度,RH驱动气体流量和熔池初始温度对温度下降的影响。分析了脱硫过程中钢液中的硫含量和钢液中的最终硫含量。通过采取合理的喷射操作条件处理10分钟,最低硫含量可以从30 ppm降至10 ppm。在相同条件下,钢液中硫去除率和最终硫含量的模拟结果与工厂生产的模拟结果吻合良好,表明该模型可用于预测脱硫过程。模拟结果还表明,在实际生产过程中,与仅在真空容器中的钢水顶部添加脱硫剂相比,喷粉脱硫具有更好的脱硫效率。

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