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The study of structure optimization of blast furnace cast steel cooling stave based on heat transfer analysis

机译:基于传热分析的高炉铸钢冷却壁结构优化研究

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摘要

The three-dimensional mathematical model of temperature and thermal stress field of cast steel cooling stave in a blast furnace has been modeled. Kinds of the parameters optimization of cast steel cooling stave in a blast furnace are proposed based on the heat transfer analysis. The results indicate that the values of the parameters optimization for a cast steel cooling stave are 200 mm for cooling channels interdistance, 25 mm for inner radius of the water channel, 180 mm for thickness of the cooling stave body, 70 mm for thickness of inlaid brick and 1.5 m/s for speed of cooling water. Reducing the water temperature would be uneconomical. The water temperature can be chosen according to the local conditions. The best choice for lining material is silicon nitrogen bond silicon carbide brick or silicon carbide brick.
机译:建立了高炉铸钢冷却壁温度和热应力场的三维数学模型。基于传热分析,提出了高炉铸钢冷却壁参数优化的种类。结果表明,铸钢冷却壁的参数优化值为冷却通道间距为200 mm,水通道内径为25 mm,冷却壁体厚度为180 mm,镶嵌厚度为70 mm砖和1.5 m / s的冷却水速度。降低水温是不经济的。水温可以根据当地情况选择。衬里材料的最佳选择是硅氮键碳化硅砖或碳化硅砖。

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