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Injection of Iron-Bearing Concentrates Derived from Steel-Smelting Slag into the Converter Bath

机译:注入源自钢制炉渣的铁轴承浓缩物到转换器浴中

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Steel-smelting slags form a large proportion of metallurgical wastes. They are generated at a rate of 150-200 kg/t of steel, on average. At current rates of steel production in Russia, the annual output of smelting slag is 9 million t, of which 8-11% consists of metallic iron and 15-40% of iron oxides. The total iron content in the slag is 20-30 wt %. Steel-smelting slag represents a valuable source of iron, which should be processed and returned to production. The slag-processing system at AO EVRAZ ZSMK permits stepwise removal of iron-bearing inclusions from the slag by magnetic separation. The iron-bearing concentrate obtained consists ofthree fractions: 0-10 mm (for use in sinter production); 10-80 mm (for blast-furnace use); and 80-250 mm (for use in steel smelting). The use of the 0-10 and 10-80 mm fractions in steel production in 160-t converters is considered in the present work. A mathematical model permits multivariant calculations to investigate the smelting dynamics and the distribution of added iron-bearing concentrates in the metallic melt, for different trajectories and dosing protocols. Analysis of the results yields new information regarding the hydrodynamic processes when iron-bearing concentrates from the slag-processing system at AO EVRAZ ZSMK are injected in the converter bath.
机译:钢制熔渣形成了大部分冶金废物。它们以150-200kg / t的速度平均产生它们。以俄罗斯的钢铁产量率,熔渣渣的年产量为900万吨,其中8-11%由金属铁和15-40%的氧化铁组成。炉渣中的总铁含量为20-30wt%。钢冶炼渣代表了一种有价值的铁来源,应该处理并返回生产。 AO EVRAZ ZSMK的熔渣处理系统允许通过磁分离逐步去除炉渣中的熨斗夹杂物。获得的铁轴承浓缩物由三分之物分数:0-10mm(用于烧结制作); 10-80毫米(用于鼓炉使用);和80-250毫米(用于钢制熔炼)。在本作工作中考虑在160-T转换器中使用0-10和10-80mm级分数。数学模型允许多变量计算来研究冶炼动力学和金属熔体中添加的铁轴承浓缩物的分布,用于不同的轨迹和给药方案。结果分析产生关于来自Ao EvRAZ Zsmk的炉渣处理系统的铁轴承浓缩物在转换器浴中注入时的流体动力过程的新信息。

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