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Importance of Melt Generation and Properties in Iron Ore Sintering

机译:铁矿石烧结中熔体生成和性能的重要性

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In iron ore sintering material coalescence leading to densification occurs in the flame front. Unless a certain level of material coalescence is achieved, the obtained sinter product will not have the necessary size or load-bearing strength requirements. The efficiency of this process is dependent on melt volume and flowability of the molten system at flame front. Melt volume is greatly affected by the assimilation process which depends on ore properties – composition, porosity and size. The aim of this study is to provide information on the effect of solids ratio and melt properties on coalescence. In a sinter plant these parameters alter with changing blend composition. In this study, the behaviour of tablets containing four different iron sources: porous and dense ores, sinter and a chemical reagent, was studied in two fashions: theoretically the influence of assimilation on the properties of the melt and the three-phase system was examined; by experiments with an electric furnace, material coalescence was quantified using sinter density and pore property analysis. Results show that the porous ore tablet was more deformable and had a higher densification degree compared with the dense ore tablet. The highest density was found for the tablets containing sinter and chemical grade reagents. The results indicate that increased level of porous ore or sinter of return fines may enhance coalescence in sintering.
机译:在铁矿石烧结材料中,导致致密化的聚结在火焰前沿发生。除非达到某种程度的材料结合,否则所得的烧结产品将不具有必要的尺寸或承载强度要求。该过程的效率取决于火焰前沿的熔体体积和熔融系统的流动性。熔炼量受同化过程的影响很大,同化过程取决于矿石的性质–成分,孔隙度和大小。这项研究的目的是提供有关固含量比和熔体性质对聚结的影响的信息。在烧结厂中,这些参数随混合成分的变化而变化。在这项研究中,以两种方式研究了包含四种不同铁源(多孔和致密矿石,烧结矿和化学试剂)的片剂的行为:从理论上研究了同化对熔体和三相系统性能的影响;通过电炉实验,使用烧结密度和孔隙特性分析对材料的聚结进行了定量。结果表明,与致密矿片相比,多孔矿片更易变形,致密化程度更高。含有烧结矿和化学级试剂的片剂密度最高。结果表明,多孔矿石或返回粉矿烧结水平的提高可增强烧结中的聚结。

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