Investigation of thermal processes in out-of-furnace treatment of steel with the help of mathematical modeling.

Z. Kabakov, M. A. Mashchenko
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Abstract

The main method of metal finishing in terms of chemical composition and temperature in modern converter production is out-of-furnace treatment of steel. The duration of stay of metal in the ladle increased several times, which led to an increase in heat losses from the metal, in particular, when blowing metal with inert gas, as well as during transportation of the ladle with metal. While the temperature of steel in the ladle decreased. Therefore, to ensure the required temperature at the next technological operation it is necessary to heat the metal, which will lead to an increase in average process duration and as well as to an increase in energy consumption for steel production. To study the regu-larities of thermal processes in ladles, a two-dimensional mathematical model has been developed that differs from the known ones: using a systematic approach in formalizing the physical description, taking into account heat transfer in slag, taking into account the slag solidification process, taking into account the heat transfer between slag and the ladle lid. It is known that the lid is used for metal casting, while during neutral gas blowing and ladle transportation the lid is used very rarely. Regularities of metal cooling in the steel ladle depending on the application of the ladle lid were estab-lished. A comparative analysis of the results of research on the application of the lid during metal curing in the ladle during out-of-furnace processing of steel has been carried out. The analysis and evaluation of changes in the metal cooling rate and absolutevalues of metal heat loss have been carried out. The study showed that the transportation of the ladle from out-of-furnace processing facilities to the casting stand covered with a lid, will reduce all the heat loss from the metal by more than 2 times. The results obtained can be used to predict the reduction of metal temperature and minimize heat losses during out-of-furnace treatment of metal in the steel ladle.
借助数学模型研究钢材炉外处理的热过程。
就化学成分和温度而言,现代转炉生产中金属精整的主要方法是钢的炉外处理。金属在钢包中的停留时间增加了几倍,这导致金属的热量损失增加,特别是在用惰性气体吹金属时,以及在带金属的钢包运输过程中。而钢包中的钢水温度却下降了。因此,为了确保下一次工艺操作所需的温度,必须加热金属,这将导致平均工艺持续时间增加,以及钢铁生产能耗增加。为了研究钢包内热过程的规律性,我们建立了一个与已知模型不同的二维数学模型:采用系统方法对物理描述进行形式化,考虑渣中的热传递,考虑渣的凝固过程,考虑渣与钢包盖之间的热传递。众所周知,钢包盖用于金属铸造,而在中性气体吹炼和钢包运输过程中,钢包盖很少使用。根据钢包盖的使用情况,确定了钢包内金属冷却的规律。对钢水出炉加工过程中钢包内金属固化过程中钢包盖的应用研究结果进行了比较分析。对金属冷却速度的变化和金属热损失的绝对值进行了分析和评估。研究结果表明,将钢包从炉外加工设施运送到盖有盖子的浇铸台,可将金属的所有热量损失减少 2 倍以上。获得的结果可用于预测钢包炉外处理金属过程中金属温度的降低和热损失的最小化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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