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Microstructural Evolution in Directional Solidification

机译:定向凝固过程中的微观组织演变

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摘要

The current status of microstructure formation during the directional solidification of binary alloys is summarized with an emphasis on the issues that still require fundamental understanding. Most rigorous theoretical models are based on diffusive growth conditions. However, significant convection effects are generally present during directional solidification that makes it difficult to validate the models. It will be shown that a significant fraction of current experimental data is obtained under conditions in which fluid flow in the melt is either significant or dominant. In peritectic systems, the presence of fluid flow can give rise to novel microstructures that are not found under diffusive growth conditions. For single-phase alloys, fluid flow can significantly alter microstructural scales and morphological transition conditions. We shall present experimental results in Al-Cu, Sn-Cd and Pb-Bi systems, and show how the results obtained in presence of fluid flow can be analyzed quantitatively through the characterization of microstructure in terms of local conditions at the interface. In addition, an experimental technique will then be discussed in which not only diffusive growth conditions can be achieved, but convection effects can also be gradually introduced to examine systematic changes in microstructural characteristics as a function of level of convection.
机译:总结了二元合金定向凝固过程中微观结构形成的现状,重点放在仍然需要基本理解的问题上。大多数严格的理论模型都是基于扩散生长条件。但是,定向凝固过程中通常会出现明显的对流效应,这使得难以验证模型。将显示出,在熔体中的流体流动显着或占主导的条件下,可获得相当一部分当前的实验数据。在包晶体系中,流体流动的存在会产生在扩散生长条件下未发现的新型微结构。对于单相合金,流体流动会显着改变微观结构规模和形态转变条件。我们将介绍在Al-Cu,Sn-Cd和Pb-Bi系统中的实验结果,并展示如何通过界面处的局部条件表征微观结构来定量分析存在流体流动时获得的结果。此外,将讨论一种实验技术,其中不仅可以达到扩散生长条件,而且还可以逐步引入对流效应,以检查微结构特征随对流水平变化的系统变化。

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