首页> 外文会议>TMS annual meeting exhibition;Symposium on characterization of minerals, metals, and materials >EXPERIMENT STUDY ON SINTERING PROCESS OPTIMIZATION OF HIGH CHROMIUM VANADIUM-TITANIUM MAGNETITE
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EXPERIMENT STUDY ON SINTERING PROCESS OPTIMIZATION OF HIGH CHROMIUM VANADIUM-TITANIUM MAGNETITE

机译:高铬钒钛磁铁矿烧结工艺优化的实验研究

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High chromium vanadium-titanium magnetite is one kind of Fe-V-Ti-Cr composite ore resources, which owes high utilization value. Owing to lacking systematic study on the sintering of this ore home and abroad, effects of carbon addition and basicity on sintering process and sinter metallurgical properties, such as sinter yield, vertical sintering speed, tumbler strength, sinter machine utilization coefficient, and low temperature reduction degradation were investigated systematically under laboratory conditions in the paper. The results shows that, when high chromium vanadium-titanium magnetite proportion is kept unchanged as 13% in sintering feeds, sintering process index and metallurgical properties are the optimum under carbon addition 5.0% and basicity 2.70, which meets the requirements of blast furnace burdens. This research provides technical parameters for practical sintering production of high chromium vanadium-titanium magnetite.
机译:高铬钒钛磁铁矿是一种Fe-V-Ti-Cr复合矿资源,具有较高的利用价值。由于国内外对该烧结矿缺乏系统的研究,碳的添加和碱度对烧结工艺和烧结矿冶金性能的影响,如烧结产量,垂直烧结速度,转鼓强度,烧结机利用率和低温还原本文在实验室条件下对降解进行了系统的研究。结果表明,当烧结进料中高铬钒钛磁铁矿比例保持在13%不变时,在添加碳量为5.0%,碱度为2.70的条件下,烧结工艺指标和冶金性能均达到最佳,满足了高炉负荷的要求。该研究为高铬钒钛磁铁矿的实际烧结生产提供了技术参数。

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