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Experimental analysis of the columnar-to-equiaxed transition in directionally solidified Al-Ni and Al-Sn alloys

机译:定向凝固Al-Ni和Al-Sn合金柱状-等温转变的实验分析

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Experiments were carried out to investigate the columnar-to-equiaxed transition (CET) during the upward vertical directional solidification of hypoeutectic Al-Ni and Al-Sn alloys. For the growth conditions examined both the thermal and solutal profiles inside the mushy zone and in the overlying melt ahead of the dendrite tips are expected to be stable, since the solute enrichment increases the melt density, and no solute movement induced by convection will affect the CET. From the experimental thermal profiles, tip cooling rates, tip growth rates and thermal gradients have been determined. It was found that the CET occurs for a critical value of cooling rate, with the columnar growth prevailing throughout the casting for cooling rates higher than such critical value, which for a particular binary alloy system is independent of the solute concentration in the hypoeutectic range. For Al-Sn and Al-Ni alloys the critical cooling rates were found to be 0.30 K/s and 0.16 K/s, respectively.
机译:通过实验研究了亚共晶Al-Ni和Al-Sn合金在向上垂直方向凝固过程中的柱状转变为等温转变(CET)。对于所检查的生长条件,由于溶质富集会增加熔体密度,并且对流引起的溶质移动都不会影响硅藻土的糊状区内部以及枝晶尖端之前的上覆熔体中的热剖面和溶质剖面,因此预计是稳定的。六级考试根据实验的热曲线,已经确定了尖端冷却速率,尖端生长速率和热梯度。已经发现,CET发生在冷却速率的临界值上,在整个铸件中,柱状生长普遍存在于冷却速率高于该临界值的情况下,对于特定的二元合金系统而言,柱状生长与亚共晶范围内的溶质浓度无关。对于Al-Sn和Al-Ni合金,临界冷却速率分别为0.30 K / s和0.16 K / s。

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