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Change of Mold Slag Composition during Slab Casting of Steel with High Al Content

机译:高铝含量钢坯连铸过程中结晶器渣成分的变化

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摘要

Three different mold slags have been sampled in dependence of time during slab casting of TRIP steel, and compositional changes have been analyzed. Mass transfer coefficients governing the decrease of silica and increase of alumina have been determined. Moreover change of manganese content was investigated in dependence of the initial manganese content of the mold powder which was close to zero for one of the powders investigated. The following findings have been revealed: Mass transfer coefficients are rising with increasing elapsed time or decreasing silica content, respectively. An initial increase of manganese content by oxidation from the steel followed by later reduction has been observed for the manganese free mold powder. For interpretation of these findings, further simulation according to an effective equilibrium reaction zone model was performed. It was revealed that the primary impact of the steel flow at the steel/slag interface close to the mold wall followed by a stratified flow is of major importance for the phenomena observed. Further results make it possible to predict the steady state composition and show that steady state silica content is nonzero in any case. Moreover, for the mold powders investigated here, it was concluded that manganese content does not decrease silica reduction.
机译:在TRIP钢的板坯连铸过程中,根据时间对三种不同的结晶渣进行了采样,并对成分变化进行了分析。已经确定了控制二氧化硅减少和氧化铝增加的传质系数。此外,根据铸型粉末的初始锰含量对锰含量的变化进行了研究,对于所研究的一种粉末,其初始锰含量接近于零。揭示了以下发现:传质系数分别随着经过时间的增加或二氧化硅含量的减少而增加。对于不含锰的防霉粉,已经观察到通过从钢中氧化而使锰含量最初增加,然后再进行还原。为了解释这些发现,根据有效的平衡反应区模型进行了进一步的模拟。已经发现,对于观察到的现象,钢流在靠近模具壁的钢/渣界面处的主要冲击,然后是分层流,是最重要的。进一步的结果使得可以预测稳态组成,并表明稳态二氧化硅含量在任何情况下都不为零。此外,对于这里研究的防霉粉,可以得出结论,锰含量不会降低二氧化硅的还原率。

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