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Numerical simulation of slab centerline segregation with mechanical reduction during continuous casting process

机译:连铸过程中板坯中心线偏析并力学还原的数值模拟

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The mechanical reduction is an effective way to improve the strand center segregation during the continuous casting process, while the effect of reduction parameters on solute transport phenomenon has rarely been addressed. In the present work, a two-phase solidification model coupling the thermal shrinkage and mechanical reduction was established to investigate fluid flow and solute distribution in the continuous casting slab. In the model, an integrated method was used to define solid deformation, which was dependent on the solidification behavior in the center. The results show that the solidified shell contracting outward by thermal shrinkage will be compressed to slab center with mechanical reduction and the enriched liquid steel transporting downwards is suppressed, resulting in the center segregation improvement. The reduction zone should cover the solidification range in the slab center, where the liquid fraction is between 0.95 and 0.01. The mechanical reduction applied in the earlier stage strongly influences the solidification end, while that in the later stage obviously affects center segregation evolution. Moreover, it is found that the solid phase still contracts intensively to slab surface, even the liquid phase has already solidified. Therefore, the mechanical reduction should also be applied in the subsequent cooling stage to avoid the center porosity formation. Besides the reduction amount and position, the slab stretching in the reduction zone is also another important factor influencing the improvement of center segregation.
机译:机械还原是改善连铸过程中铸坯中心偏析的有效方法,而还原参数对溶质迁移现象的影响很少得到解决。在本工作中,建立了热收缩和机械还原相结合的两相凝固模型,以研究连铸坯中的流体流动和溶质分布。在模型中,使用集成方法定义实体变形,该方法取决于中心的凝固行为。结果表明,由于热收缩而向外收缩的凝固壳将通过机械压缩而被压缩至板坯中心,并且抑制了富集钢液向下输送,从而改善了中心偏析。还原区应覆盖板坯中心的凝固范围,在此范围内,液体分数在0.95至0.01之间。在较早阶段施加的机械压下力强烈影响凝固结束,而在较后阶段施加的机械压制力明显影响中心偏析的发展。此外,发现即使液相已经固化,固相仍强烈地收缩至板表面。因此,还应在随后的冷却阶段进行机械还原,以避免形成中心孔隙。除了压下量和位置以外,压下区的板坯拉伸也是影响中心偏析改善的另一个重要因素。

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