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Growth of equiaxed dendritic crystals settling in an undercooled melt, Part 2: Internal solid fraction

机译:等轴晶状晶体在过冷熔体中的生长,第2部分:内部固体分数

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Experiments are conducted to measure the internal solid fraction evolution of equiaxed dendritic crystals that are freely growing and settling in an undercooled melt using the transparent model alloy succinonitrile-acetone. The internal solid fraction is determined from the measured settling speed and crystal envelope shape and size. Depending on the melt undercooling and acetone concentration, the internal solid fraction is found to vary between 0.55 and 0.1. In all experiments, the internal solid fraction decreases continually during settling. Based on heat and solute balances, a model is developed for predicting the internal solid fraction evolution under convective conditions. Nusselt and Sherwood number correlations are obtained that allow for the calculation of the thermal and solutal boundary layer thicknesses at the crystal envelope. The measured and predicted internal solid fraction evolutions are found to be in good agreement.
机译:进行实验以测量等轴树枝状晶体的内部固体分数演变,这些树枝状晶体使用透明模型合金丁二腈-丙酮自由生长并沉淀在过冷的熔体中。内部固体分数由测得的沉降速度以及晶体包膜的形状和大小确定。取决于熔体过冷和丙酮浓度,发现内部固体分数在0.55至0.1之间变化。在所有实验中,内部固体分数在沉降过程中持续降低。基于热量和溶质的平衡,开发了一个模型,用于预测对流条件下内部固体分数的变化。获得Nusselt和Sherwood数的相关性,以便计算晶体包络处的热边界层和溶质边界层的厚度。测得的和预测的内部固体分数的变化被发现是非常一致的。

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