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Development of a Bonding Phase within Titanomagnetite-Coal Compacts

机译:钛磁铁矿-煤块中粘结阶段的发展

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The development of the bonding phase within reduced ironsand-coal compacts was studied to investigate the reduction of ironsand-coal compacts and to understand how the oxide bonding phase develops during reduction. Ironsand ore and sub-bituminous coal were mixed and pressed into compacts which were reduced by heating in a thermogravimetric furnace (TGA) to 1 350℃ under argon. The reduced compacts were characterised in terms of their composition, strength and microstructure. The strength in the reduced compacts is brought about by slag bonding between the relict ironsand particles. Formation of a metallic network was limited, and seen only in relatively few samples. As the ironsand particles reduce, oxides surrounding the sponge iron structure form a slag. Slags from different particles then join to form a slag network between the particles. The formation of a slag and the bonding between the particles is aided by inherent silica and added lime. Reducing the spacing between ironsand particles in the green compacts was found to be important in increasing inter-particle bonding. Increasing the coal-iron ratio in the compacts increased the spacing and decreased the bonding. Decreasing the ironsand particle size decreased the spacing between ironsand particles, and increased the bonding in the reduced compacts.
机译:研究还原铁砂-煤块中键合相的发展,以研究铁砂-煤块的还原,并了解还原过程中氧化物键合相如何发展。将铁砂矿石和次烟煤混合并压制成块,然后通过在热重炉(TGA)中在氩气下加热至1350℃将其还原。还原的压块的特征在于其组成,强度和微结构。还原压块的强度是通过残渣铁砂和颗粒之间的熔渣结合来实现的。金属网络的形成是有限的,并且仅在相对较少的样品中可见。随着铁砂颗粒的还原,海绵铁结构周围的氧化物形成炉渣。来自不同颗粒的炉渣然后结合在一起,在颗粒之间形成炉渣网络。矿渣的形成和颗粒之间的结合是由固有的二氧化硅和添加的石灰辅助的。发现减小生坯中的铁和颗粒之间的间距对于增加颗粒间的结合是重要的。增加压坯中的煤铁比可增加间距并减少粘结。铁砂粒径的减小会减小铁砂颗粒之间的间距,并增加压坯的粘结性。

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