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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Optimized use of MgO flux in the agglomeration of high-chromium vanadium-titanium magnetite
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Optimized use of MgO flux in the agglomeration of high-chromium vanadium-titanium magnetite

机译:MgO助熔剂在高铬钒钛磁铁矿团聚中的优化利用

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摘要

The optimized use of MgO flux in the agglomeration of high-chromium vanadium-titanium magnetite was investigated systematically through sinter and pellet experiments. MgO was added in the form of magnesite. When the content of MgO in the sinter was increased from 1.95wt% to 2.63wt%, the low-temperature reduction degradation index increased from 80.57% to 82.71%. When the content of MgO in the pellet was increased from 1.14wt% to 2.40wt%, the reduction swelling index decreased from 15.2% to 8.6%; however, the compressive strength of the oxidized pellet decreased dramatically and it was 1985 N with an MgO content of 1.14wt%. This compressive strength does not satisfy the requirements for blast-furnace production. When all of the aforementioned results were taken into account, the sinter with a high MgO content (2.63wt%) matching the pellet with a low MgO content (less than 1.14wt%) was the rational burden structure for smelting high-chromium vanadium-titanium magnetite in blast furnaces.
机译:通过烧结和球团实验系统研究了MgO熔剂在高铬钒钛磁铁矿团聚中的优化使用。以菱镁矿形式添加MgO。当烧结物中MgO的含量从1.95wt%增加到2.63wt%时,低温还原降解指数从80.57%增加到82.71%。当颗粒中的MgO含量从1.14wt%增加到2.40wt%时,还原溶胀指数从15.2%下降到8.6%;然而,氧化后的颗粒的抗压强度急剧下降,为1985 N,MgO含量为1.14wt%。该抗压强度不能满足高炉生产的要求。考虑到上述所有结果后,高MgO含量(2.63wt%)的烧结矿与低MgO含量(小于1.14wt%)的球团相匹配是熔炼高铬钒-钒的合理负荷结构。高炉中的钛磁铁矿。

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