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Factors influencing melt fluidity of iron ore

机译:影响铁矿石熔体流动性的因素

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The melt fluidity (MF) of iron ore, which reflects the flow and bonding abilities of the melt, plays a significant role during sintering. In this study, the MF of iron ore was measured by the micro-sintering method, and the formation and flow of the melt were analyzed using Factsage 7.0. Additionally, chemical reagent simulation tests were conducted to determine the effects of chemical components and gangue mineral types on MF, and the effect of MF on sinter strength was studied by sinter pot tests. The results show that the sintering melt includes some non-miscible liquids and solids. The liquid phases of hematite and limonite ores include silico-ferrites of calcium and aluminum system (predominant) and silico-ferrites of calcium system, and those of the magnetite ores are CaO-FeO-Fe2O3-SiO2 systems. The MF of iron ore depends mainly on liquid amount and viscosity, which play opposite roles in increasing the MF. Moreover, SiO2 increases the MF, whereas Al2O3 and loss on ignition decrease the MF. Increasing the substitution proportion of quartz and gibbsite by kaolinite enhances the MF. The effect of MF of the ore blends on the shatter index of the sinter shows a trend of inverted "V".
机译:铁矿石的熔体流动性(MF)反映了熔体的流动和粘合能力,在烧结过程中发挥着重要作用。在该研究中,通过微烧结方法测量铁矿石的MF,使用Factage 7.0分析熔体的形成和流动。另外,进行了化学试剂模拟试验以确定化学成分和甘油矿物类型对MF的影响,并通过烧结罐试验研究了MF对烧结强度的影响。结果表明,烧结熔体包括一些不混溶的液体和固体。赤铁矿和褐铁矿矿石的液相包括钙和铝系统(主要)和钙体系的硅铁氧体,磁铁矿矿石是CaO-FeO-Fe2O3-SiO2系统。铁矿石的MF主要取决于液体量和粘度,这在增加MF时起着相反的作用。此外,SiO 2增加了MF,而Al2O3和点火的损失会降低MF。增加石英和长桥的替代比例,高岭石增强了MF。矿石混合物MF对烧结碎片指数的影响显示了倒“V”的趋势。

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