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Mathematical Modeling Study on Combined Side and Top Blowing AOD Refining Process of Stainless Steel

机译:不锈钢侧吹和顶吹AOD联合精炼过程的数学模型研究

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摘要

Mathematical modeling of the combined side and top blowing AOD refining process of stainless steel has further been studied. A new model proposed is generally based on the analysis and assumptions made for the process in our previous investigation. Particularly, the heat transfer characteristics of the vessel are analyzed in terms of the two-dimensional transient heat-conduction problems of composite walls. The heat and mass balances of the system are more comprehensively and precisely performed. The model has been applied to 28 heats of 304-grade austenitic stainless steel refining in a 120t AOD converter. The results present that the changes in the composition and temperature of the liquid steel with the time during the whole process can be accurately predicted using the model. The competitive oxidation among the elements in the steel during the oxidative refining with the relevant oxygen distribution ratios, and the competitive reduction of the oxides in the slag during the Ar agitating and reductive refining with the appropriate oxygen supply ratios can be well characterized and reasonably determined using the Gibbs free energies of the reactions. The critical carbon concentrations (after which the decarburization alters to be limited by the mass transfer of carbon in liquid steel) for the top, side and combined blowing of 304-grade steel in this work are in the ranges of 0.895 to 0.942, 0.078 to 0.224, 0.144 to 0.255 mass%, respectively. The effects of some factors on the refining result and the optimization of blowing technology have been considered from the model predictions. The model can provide a reliable basis and useful information for determining and optimizing the technology of this AOD process of stainless steel, and controlling the process in real time and on-line.
机译:进一步研究了侧吹和顶吹AOD精炼相结合的不锈钢的数学模型。提出的新模型通常基于我们先前调查中对该过程所做的分析和假设。特别地,根据复合壁的二维瞬态导热问题分析了容器的传热特性。系统的热量和质量平衡得以更全面,更精确地执行。该模型已应用于120t AOD转炉中的28炉304级奥氏体不锈钢精炼。结果表明,使用该模型可以准确地预测钢水成分和温度随时间的变化。可以很好地表征和合理确定具有相关氧分布比的氧化精炼过程中钢中元素之间的竞争性氧化,以及在Ar搅拌和还原精炼过程中熔渣中氧化物的竞争性还原。利用反应的吉布斯自由能在这项工作中,304级钢的顶部,侧面和联合吹炼的临界碳浓度(此后脱碳改变,以受液态钢中碳的传质影响),范围为0.895至0.942、0.078至分别为0.224、0.144至0.255质量%。从模型预测中考虑了一些因素对精炼结果和吹炼工艺优化的影响。该模型可以为确定和优化该不锈钢AOD工艺技术,实时在线控制工艺提供可靠的依据和有用的信息。

著录项

  • 来源
    《ISIJ international》 |2011年第3期|p.365-374|共10页
  • 作者单位

    Department of Metallic Materials, College of Materials Science and Engineering, Shanghai University, Shanghai, 200072 P. R. China.;

    Department of Metallic Materials, College of Materials Science and Engineering, Shanghai University, Shanghai, 200072 P. R. China.;

    Department of Metallic Materials, College of Materials Science and Engineering, Shanghai University, Shanghai, 200072 P. R. China.;

    Stainless Steel Branch, Baoshan Iron & Steel Co., Ltd., Shanghai, 200431 P. R. China.;

  • 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
  • 中图分类
  • 关键词

    stainless steel; AOD refining; combined side and top blowing process; mathematical modeling;

    机译:不锈钢;AOD精制;侧面和顶部吹塑工艺相结合;数学建模;
  • 入库时间 2022-08-18 00:02:52

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