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Development of Slag-Forming Mixture for Steel-Pouring Ladle and its Application Technology During Production of Steels with High Aluminum and Sulfur Content

机译:高铝硫含量钢浇铸钢包渣形成混合物的开发及其应用技术

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摘要

Flotation and assimilation of nonmetallic inclusions from metal slag in steel-pouring ladles and tundishes during pouring steels with increased aluminum and sulfur content are considered. The authors study the formation of nonmetallic inclusions in a steel-pouring ladle during steel extra-furnace treatment, the process of submerged nozzle clogging during continuous casting, the change in slag composition in a tundish, and development of an assimilation mixture composition for a steel-pouring ladle. Laboratory studies are made of the physicochemical properties of a developed SFM. It is established that use of the new SFM makes it possible to improve nonmetallic inclusion assimilation in a steel-pouring ladle and does not lead to a marked change in slag chemical composition and physical properties in a tundish. As a result of this, there is less steel contamination with nonmetallic inclusions and a reduction in submerged nozzle clogging.
机译:考虑了在铝和硫含量增加的钢浇注过程中,钢浇注钢包和桶中金属渣中非金属夹杂物的浮选和同化作用。作者研究了钢外炉处理过程中浇铸钢包中非金属夹杂物的形成,连续铸造过程中喷嘴浸没的过程,中间包中炉渣成分的变化以及钢的同化混合物组成的发展。 -浇注钢包。对已开发的SFM的理化性质进行了实验室研究。可以确定的是,使用新的SFM可以改善浇铸钢包中的非金属夹杂物同化作用,并且不会导致中间包中炉渣的化学成分和物理性能发生明显变化。结果,减少了非金属夹杂物的钢污染,并减少了浸入式喷嘴的堵塞。

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