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首页> 外文期刊>International Journal Cast Metals Research >Effect of melt flow on dendritic growth in AlSi7-based alloys during directional solidification
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Effect of melt flow on dendritic growth in AlSi7-based alloys during directional solidification

机译:定向凝固过程中熔体流动对AlSi7基合金枝晶生长的影响

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摘要

High-strength automotive components are often made of AlSi7-based alloys. A very challenging problem with aluminium casting is the influence of melt flow during solidification, because it affects the microstructure formation and therefore the material properties. The scope of this paper is to investigate the effect of forced melt flow on the evolution of the dendritic microstructure in a binary AlSi7 alloy during directional solidification. Global modelling using the software CrysMAS provides typical flow patterns and velocities. These values are used as boundary condition for the flow in the phase field code MICRESS, which allows the numerical simulation of dendritic array solidification in 2D with applied flow. From solidification experiments in a gradient furnace with applied rotating magnetic field the dendrite shapes are determined. It is found consistently that intense melt flow leads to asymmetric dendrite shapes and the growth behaviour of the dendrite arms is directly correlated with the flow direction.
机译:高强度汽车部件通常由AlSi7基合金制成。铝铸件的一个非常具有挑战性的问题是凝固过程中熔体流动的影响,因为它会影响微观结构的形成,进而影响材料的性能。本文的范围是研究定向凝固过程中强制熔体流动对二元AlSi7合金中树枝状组织的演变的影响。使用软件CrysMAS进行全局建模可提供典型的流动模式和速度。这些值在相场代码MICRESS中用作流动的边界条件,该条件允许在施加流动的情况下以二维方式对树枝状阵列凝固进行数值模拟。从在施加了旋转磁场的梯度炉中进行的凝固实验确定了枝晶形状。一致地发现,强烈的熔体流动导致枝晶形状不对称,并且枝晶臂的生长行为与流动方向直接相关。

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