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Motion and Distribution of Floating Grain in Direct-Chill Casting of Aluminum Alloys: Experiments and Numerical Modeling

机译:铝合金直接寒冷铸造浮粒的运动和分布:实验与数值模型

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摘要

Sedimentation of free-floating grains is the main origin of the negative centerline segregation in direct-chill casting of aluminum alloys. This study examines the motion and distribution of the floating grains during casting using experimental measurements and numerical modeling. The typical floating grains consisting of interior solute-lean coarse dendrites and periphery fine dendrites were experimentally observed only in the central region of the billet along with the negative segregation. The billet exhibits the strongest segregation at the center where the most floating grains are found. In simulations, under the action of the convection and the underlying forces, the grains floating in the transition region exhibit different motion behaviors, i.e., settling to the mushy zone, floating in the slurry zone, and moving upward to the liquid zone. However, most grains were transported to the central region of the billet and then were captured by the mushy zone and settled. Therefore, the floating grains comprise the largest share of the grain structure at the center of the billet, in agreement with the experimental results. Moreover, the simulation results indicate that the increased size of the grains promotes the sedimentation of the floating grains. These results are important for the future alleviation of negative centerline segregation in direct-chill casting of aluminum alloys.
机译:自由浮晶沉降是铝合金直接寒冷铸造中负中心线隔离的主要起源。本研究在使用实验测量和数值模型期间检查浮晶颗粒的运动和分布。由内部溶质 - 稀粗树枝状和周边细树枝组成的典型浮粒仅在坯料的中心区域以及负隔离中进行实验观察。坯料在找到最漂浮谷物的中心处具有最强的偏析。在模拟的情况下,在对流和潜在力的作用下,漂浮在过渡区域的晶粒表现出不同的运动行为,即沉淀到糊状区,漂浮在浆料区中,向上移动到液体区。然而,大多数晶粒被运输到坯料的中心区域,然后被糊状区捕获并沉降。因此,浮晶包括坯料中心在坯料中心的最大份额,同时与实验结果一致。此外,仿真结果表明,晶粒的增加尺寸促进了浮晶粒的沉降。这些结果对于未来的铝合金直接寒冷铸造中的负中心线隔离是重要的。

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