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Transient flow and mold flux behavior during ultra-high speed continuous casting of billet

机译:超高速连续铸造期间的瞬态流动和模具通量行为

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Ultra-high casting speed is an important development feature for efficient continuous casting of billet. A mathematical model which addresses the high flow rate of molten steel in the billet mold is presented, coupling slag flow with heat flux and solidification. The model is then applied to investigate the correlation between transient steel flow, slag infiltration and heat transfer in the mold-shell gap during ultra-high casting speed. The results show that the meniscus level experiences a hump near the mold wall and a valley near the nozzle as a result of the recirculating flow in the upper mold. The liquid slag around the mold wall infiltrates preferentially into the gap to be consumed quickly, whereas those near the SEN flows to the mold with a low speed. Severe fluctuations in meniscus level will disturb the slag infiltration, which in turn causes the formation of uneven slag films, leading to intensified heat flux fluctuations in the mold-shell gap, especially in the area of 20?60?mm from the mold corner.
机译:超高铸造速度是钢坯高效连续铸造的重要发展特征。提出了一种解决坯料模具中钢水高流速的数学模型,耦合热通量和凝固渣。然后应用该模型以研究超高铸造速度期间模具 - 壳间隙中瞬态钢流动,炉渣渗透和传热之间的相关性。结果表明,由于上模具的再循环流动,弯月面水平经历模具墙附近的驼峰和喷嘴附近的谷。模具壁周围的液体炉渣优先进入快速消耗的间隙,而那些近森附近的液体以低速流向模具。弯月球水平的严重波动将干扰炉渣渗透,这反过来导致形成不均匀的炉渣薄膜,导致模具壳间隙中的加热通量波动,尤其是从模具角度的20?60Ωmm的面积。

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