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Blast Furnace Burdens Behaviour of Materials during Softening and Melting

机译:在软化和熔化过程中,高炉负担材料的行为

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In order to get the reasonable sinter basicity and suitable burden structures in Ansteel, the metallurgical performance of sinter, the softening-melting properties with different burdens were studied systematically in laboratory. The results show that, the reducibility and the reduction disintegration are improved, and the mineral compositions of the sinter become reasonable with the basicity increasing. When the basicity reaches 1.95-2.15, the burden structures with single sinter will achieve good softening-melting performance, and the maximum pressure maintains at a low level. When the sinter collocates with pellet and the basicity reaches 1.90-2.15, there will be narrow softening and melting zones and a low S property value. With the addition of natural lump ore, the softening zone will be widened and the melting zone will be narrowed, but burden's comprehensive performance will be bettered. The assessment indexes obtained for the interactive reaction between burdens can assess the reasonableness of burden structure. Considering the reactivity index and the economic cost, the reasonable proportion of lump ores in blast furnace needs to be controlled within 15%-20%.
机译:为了在Ansteel中获得合理的烧结碱度和合适的负荷结构,在实验室中系统地研究了烧结的冶炼性能,烧结性能和不同负担的熔化性能。结果表明,改善了还原性和还原崩解,烧结矿物组合物具有合理的碱性增加。当碱性达到1.95-2.15时,具有单砂嵌的负荷结构将实现良好的软化熔化性能,最大压力保持在低水平。当烧结用颗粒和碱度达到1.90-2.15时,将存在窄软化和熔化的区域和低的性质值。随着天然肿块矿石的添加,软化区将会加宽,熔化区将缩小,但将更好地综合性能。为负担之间的交互式反应获得的评估指标可以评估负荷结构的合理性。考虑到反应性指数和经济成本,高炉中块状物的合理比例需要控制在15%-20%以内。

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