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Gravity-Induced Convection during Directional Solidification of Hypermonotectic Alloys

机译:高通凝胶合金定向凝固期间的重力诱导对流

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A two-phase volume-averaging model developed for the simulation of the dynamic decomposition and solidification of hypermonotectic alloys was used to study the occurrence of convection phenomena during directional solidification of a hypermonotectic alloy (Al-10 wt.%Bi) under terrestrial condition. The model accounts for nucleation and growth of secondary phase droplets, Marangoni and Stokes forces, solute partitioning, heat release due to decomposition and solidification. It is shown that the appearance and growth of secondary droplets is accompanied with a continuous downwards motion of droplets, which rapidly becomes unstable. After relaxation of this dynamic motion the advancing solidification front freezes in the resulting non-uniform droplet distribution.
机译:用于模拟用于模拟动态分解和超调合金的凝固的两相体积平均模型用于在陆地条件下在高通凝聚合金(Al-10重量%Bi)的定向凝固期间对对流现象的发生。模型占二级液滴,Marangoni和Stokes部队的成核和生长,溶质分配,由于分解和凝固而引起的热释放。结果表明,次级液滴的外观和生长伴随着液滴的连续向下运动,这迅速变得不稳定。在这种动态运动放松之后,在所得到的非均匀液滴分布中推进凝固前冻结。

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