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Kinetic Analysis of Alumina Change in Mold Slag for High Aluminum Steel during Continuous Casting

机译:高铝钢连铸过程中铸渣中氧化铝变化的动力学分析

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摘要

A kinetic calculation model considering both a molten slag reaction with molten steel and an Al2O3 inclusion absorption in molten slag was developed to estimate the change in Al2O3 in molten slag during the continuous casting of high aluminum steel. Practical casting experiments of high aluminum steel were conducted to investigate the change in composition in the molten slag and to validate the proposed model. The calculated results show that the Al2O3 concentration in the molten slag increases quickly during the initial stage and gradually approaches a steady-state value after 900 seconds of casting, which agrees well with the experiment outcome. The change in Al2O3 in molten slag is mainly affected by the initial Al2O3 concentration w 0 of the mold powder, reaction equilibrium concentration of Al2O3 w* at the slag-steel interface, mass transfer coefficient textktextF,textAl2 textO3 {text{k}}_{{{text{F}},{text{Al}}_{2} {text{O}}_{3} }} in molten slag, Al2O3 inclusion concentration w M , and absorption coefficient β in molten steel during continuous casting of high aluminum steel. The experiment result shows that the concentration of Al2O3 in molten slag increases significantly and that SiO2 decreases strongly, while the other components in the molten slag can be negligible comparatively. Mold slag properties at 0, 5, and 45 minutes change greatly, which can deteriorate the performance of the mold slag.
机译:建立了同时考虑钢水与熔渣反应和熔渣中Al 2 O 3 夹杂物吸收的动力学计算模型,以估算Al 2的变化高铝钢连续铸造过程中熔融渣中的 O 3 。进行了高铝钢的铸造实验,以研究熔渣中成分的变化并验证所提出的模型。计算结果表明,熔渣中Al 2 O 3 的浓度在初始阶段迅速增加,并在浇铸900秒后逐渐接近稳态值。与实验结果非常吻合。熔渣中Al 2 O 3 的变化主要受初始Al 2 O 3 浓度的影响结晶器保护渣的 0 ,渣-钢界面处Al 2 O 3 w *的反应平衡浓度,传质系数textk textF,textAl 2 textO 3 {text {k}} _ {{{text {F}},{text {Al}} _ {2 } {text {O}} _ {3}}}在熔渣中的Al 2 O 3 夹杂物浓度w M 和吸收系数高铝钢连续铸造过程中钢水中的β。实验结果表明,熔渣中Al 2 O 3 的浓度显着增加,SiO 2 的浓度显着降低,而其他熔渣可以忽略不计。在0、5和45分钟时,铸渣性能发生很大变化,这可能会使铸渣的性能下降。

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