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Numerical Investigation on the Effect of Steel Strip Feeding on Solidification in Continuous Casting

机译:钢带饲料对连铸凝固效果的数值研究

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Steel strip feeding into continuous casting mold is an innovative technology improving the thick slab quality through decreasing the melt superheat and increasing the proportion of equiaxed dendrites. To investigate the embedded complex melting and solidification processes, a mathematical model has been developed to model all the essential physical behaviors of the fluid flow, heat transfer, melting and solidification during steel strip feeding into the mold. The enthalpy method is adopted to describe both the melting of steel strip and the solidification of slab. Based on the numerical findings, three periods are divided during the whole melting process of the moving strip. The effect of strip feeding on the fluid flow, temperature distribution and shell solidification in continuous casting mold are investigated. The turbulent flow in the mold is enhanced due to the fast moving of strip and the fluid nearby is cooled down which redistributes the melt superheat inside slab.
机译:钢带进料到连续铸造模具是一种创新技术,通过降低熔体过热并增加等轴枝晶的比例来提高厚的板条质量。为了研究嵌入式复合熔化和凝固过程,已经开发了一种数学模型来模拟钢带进给模具的钢带中的流体流动,传热,熔化和凝固的所有基本物理行为。采用焓方法来描述钢带的熔化和板坯的凝固。基于数值发现,在移动条的整个熔化过程中,三个时期分开。研究了条带供给在连续铸造模具中的流体流动,温度分布和外壳凝固上的影响。由于条带的快速移动,模具中的湍流增强,附近的流体冷却,将熔体过热重新分配在板内的熔体过热。

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