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Growth of tertiary dendritic arms during the transient directional solidification of hypoeutectic Pb-Sb alloys

机译:亚共晶Pb-Sb合金瞬态定向凝固过程中第三树枝状臂的生长

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Despite the importance of a complete characterization of dendritic patterns in castings, the availability of studies on the development of tertiary dendrite arms is scarce in the literature. In the present study, the tip cooling rate, local solidification time, primary and tertiary dendrite arm spacings have been determined in Pb-Sb alloys castings directionally solidified under unsteady-state heat flow conditions. The alloys compositions experimentally examined are widely used in the as-cast condition for the manufacture of positive and negative grids of lead-acid batteries. The initial growth of tertiary dendritic arms from the secondary branches was found to occur only for a Pb-3.5 wt% Sb alloy at cooling rates in the range 0.4-0.2 K/s, with no evidence of this spacing pattern for Pb-Sb alloys having lower solute content. Tertiary dendritic branches have been observed along the entire casting lengths for alloys of the Pb-Sb hypoeutectic range having compositions higher than 4.0 wt% Sb. It is shown that a power function experimental law with a characteristic −0.55 exponent is able to characterize the tertiary spacing evolution with the solidification cooling rate for alloys compositions ≥4.0 wt% Sb. The only exception was the Pb-3.5 wt% Sb alloy for which λ 3 exhibited significant lower values when compared with the experimental values obtained for the other Pb-Sb alloys for a same solidification cooling rate.
机译:尽管对铸件中的树枝状晶型进行完全表征非常重要,但文献中却缺乏关于第三级枝晶臂发展的研究。在本研究中,已经确定了在非稳态热流条件下定向凝固的Pb-Sb合金铸件的尖端冷却速率,局部凝固时间,一次和三次枝晶臂间距。实验检验的合金成分在铸态条件下被广泛用于制造铅酸蓄电池的正极和负极网格。从二级分支的第三树枝状臂的初始生长被发现只发生在冷却速率范围为0.4-0.2 K / s的Pb-3.5 wt%Sb合金时,没有证据表明这种间隔模式为Pb具有较低溶质含量的-Sb合金。对于具有高于4.0wt%的Sb的Pb-Sb亚共晶范围的合金,已经在整个铸造长度上观察到第三树枝状分支。结果表明,具有0.55指数特征的幂函数实验定律能够表征第三组分间距,其凝固速度为合金成分≥4.0 wt%Sb。唯一的例外是Pb-3.5 wt%Sb合金,与相同凝固冷却速率的其他Pb-Sb合金的实验值相比, 3 的显示出更低的值。

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