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Numerical investigation of solidification and CET of the transparent alloy NPG-37.5 wt. DC in microgravity 'TRACE' experiment

机译:透明合金NPG-37.5重量%的凝固和CET的数值研究。微匍匐“痕量”实验中的DC%DC

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A solidification experiment "TRACE" of the transparent alloy Neopentylglycol (NPG)-37.5wt.% D-Camphor (DC) was conducted on-board the sounding rocket TEXUS-47 in low-gravity environment to investigate the columnar growth and the columnar-to-equiaxed transition (CET). To improve the fundamental understanding of solidification and CET in microgravity, the current laboratory scale experiment was tried to be numerically reproduced by a recently developed 5-phase volume averaging model. The temperature gradient in the solidification cell is applied to the simulation. In absence of melt flow, the calculated cooling curves, columnar tip position, tip undercooling and velocity, and number density of equiaxed crystals were compared to the results of in-situ real-time observations of the experiment. The CET could be predicted at position close to that of experiment. Simulation reveals the competitive growth between the columnar and equiaxed crystals before CET. Modelling parameters of equiaxed nucleation and columnar tip growth are the key to regulate this competition and to locate the CET. Experimental verification of modelling parameters considering melt flow is intended in the future work.
机译:透明合金的凝固实验“TRACE”新戊二醇(NPG)-37.5wt%d樟脑(DC)中的溶液的板上进行的探空火箭下Texus-47在低重力环境调查柱状生长和columnar-到等轴过渡(CET)。为了提高微重力凝固和CET的基本了解,目前实验室规模的试验,试图通过最近开发的5相的体积平均模型进行数值再现。在凝固单元中的温度梯度被施加到模拟中。在不存在熔体流动,计算的冷却曲线,柱状尖端位置,尖端过冷度和速度,和等轴晶体的数密度进行比较,以实验的原位实时观测的结果。四,六级考试可以在位置接近实验的预测。模拟揭示CET之前柱状和等轴晶之间的竞争生长。等轴成核和柱状顶端生长的建模参数是规范这种竞争和定位CET的关键。建模考虑熔体流动参数的实验验证的目的是在今后的工作。

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