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Phase Transformation of Cohesive Zone in a Water-quenched Blast Furnace

机译:水淬高炉中粘结区的相变

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The paper investigates the transformation of iron and slag phase in cohesive zone from a water-quenched blast furnace through SEM images, EDS spectra and thermodynamic calculation. The results show that the wustite structure exists as an independent interphase insoluble in slag and iron. The content of carbon keeps about 2% in iron, and the carburization function of coke is inhibited in cohesive zone. The compositions of slag phase fluctuate in cohesive zone, while the basicity maintains about 1.8, higher than that in final slag. The liquids temperature of iron in cohesive zone is about 1673 K, while that of slag phase gradually decreases from top to bottom. The separation between slag and iron is basically completed at lower part of cohesive zone. The blocked voids caused by softening and melting burden restrains the indirect reduction at lower cohesive zone, hence an apparent titanium attachment exists around iron due to the development of direction reduction.
机译:通过SEM,EDS谱图和热力学计算,研究了水淬高炉内聚区铁和炉渣相的转变。结果表明,铁素体组织以不溶于矿渣和铁的独立相间存在。铁中的碳含量保持在2%左右,并且在粘结区抑制了焦炭的渗碳功能。炉渣相的组成在粘性区内波动,而碱度维持在1.8左右,高于最终炉渣。粘性区内铁的液体温度约为1673 K,而炉渣相的温度则从上到下逐渐降低。渣与铁之间的分离基本上在粘性区的下部完成。由软化和熔化负荷引起的堵塞的空隙限制了在较低内聚区的间接还原,因此,由于方向还原的发展,铁周围存在明显的钛附着。

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