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Composition Changes of Inclusions by Reaction with Slag and Refractory A Review

机译:通过与渣和耐火反应来构成夹杂物的变化和难证审查

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Precise control on inclusions is of great importance for improving steel quality. In secondary refining, three types of inclusion are generally observed in Al-killed steel: Al_(2)O_(3), MgO·Al_(2)O_(3) spinel, and CaO–Al_(2)O_(3) type. Many researchers have reported on inclusions transformed in the routine of Al_(2)O_(3) → MgO·Al_(2)O_(3) spinel → CaO–Al_(2)O_(3) during secondary refining in Al-killed steel. The deoxidizer of Al is intentionally added to the steel, and Al_(2)O_(3) inclusions are formed as a deoxidation product. However, MgO·Al_(2)O_(3) spinel and CaO–Al_(2)O_(3)-type inclusions have been observed even without any intentional Mg or Ca addition. Therefore, it is important to clarify the source of Mg and Ca causing MA spinel and CaO–Al_(2)O_(3)-type inclusions formation, in order to control the compositions of the inclusions. Regarding to this phenomenon, a good review was published by Park and Todoroki in 2010. Several studies have since been conducted. This paper summarized the research activities on the composition changes of inclusions during secondary refining from the aspect of thermodynamics and kinetics.
机译:夹杂物的精确控制对于提高钢质质量非常重要。在二级精炼中,通常在Al杀死钢中观察到三种类型的夹杂物:Al_(2)O_(3),MgO·AL_(2)O_(3)尖晶石,以及CAO-AL_(2)O_(3)类型。许多研究人员报道了在Al_(2)O_(3)→MgO·Al_(2)O_(3)扫描液中的常规中转化的夹杂物,CaO-Al_(2)O_(3)在Al杀钢中的二级精炼期间。 Al的脱氧剂是有意地加入钢中,Al_(2)O_(3)夹杂物形成为脱氧产物。然而,MgO·Al_(2)O_(3)尖晶石和CaO-Al_(2)O_(3)甚至没有任何有意的Mg或Ca添加,即使没有任何有意的mg或ca添加。因此,重要的是澄清Mg和Ca的来源,导致MA尖晶石和CaO-Al_(2)O_(3)型夹杂物形成,以控制夹杂物的组成。关于这种现象,2010年通过Park和Todoroki发表了一份良好的评论。自此进行了几项研究。本文总结了从热力学和动力学方面的继发性炼制过程中夹杂物组成变化的研究活动。

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