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Microstructure Evolution in a Directional Solidification Process

机译:定向凝固过程中的微观组织演变

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摘要

Models and theories of the microstructure evolution in a directional solidification (DS) process will be firstly addressed. Discrepancies between theories and experiments will be presented. For the thin film sample growth in a temperature gradient stage, the geometrical constraint makes it difficult to compare the experimental primary spacing with theoretical predictions. While for a bulk sample growth, fluid flow always exists in the solidification process despite that the growth interface rejects a lighter or heavier solute. Based on these analyses, the appropriate techniques to conduct DS experiments are proposed that can be used to test models. One is the solidification in a capillary sample where a single cell/dendrite grows. While for array growth in 3 dimensions, long-duration microgravity experiments will be the only viable way to obtain meaningful results.
机译:首先将讨论定向凝固(DS)过程中微观组织演化的模型和理论。将介绍理论与实验之间的差异。对于在温度梯度阶段的薄膜样品生长,几何约束使其很难将实验的主间距与理论预测值进行比较。尽管对于大量样品生长,尽管生长界面拒绝了较轻或较重的溶质,但在固化过程中始终存在流体流动。基于这些分析,提出了进行DS实验的适当技术,可用于测试模型。一种是在毛细管样品中固化,其中单个细胞/枝晶生长。尽管对于3维阵列增长,长时间微重力实验将是获得有意义结果的唯一可行方法。

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