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首页> 外文期刊>Journal of Materials Science >Dynamics of interface pattern formation in 3D alloy solidification: First results from experiments in the DECLIC directional solidification insert on the International Space Station
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Dynamics of interface pattern formation in 3D alloy solidification: First results from experiments in the DECLIC directional solidification insert on the International Space Station

机译:3D合金凝固过程中界面图案形成的动力学:国际空间站DECLIC定向凝固插入物实验的第一项结果

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摘要

One of the critical microstructures in directional solidification of alloys is the cellular/dendritic pattern that governs the properties and reliability of the solidified material. Our quantitative understanding of the solid-liquid interface pattern has come mainly from experiments in thin samples where the microstructure selection is shown to occur during the dynamical growth process. A more realistic configuration is to examine the evolution of microstructure in three-dimensions, which is not possible terrestrially since convection effects dominate in bulk samples and prevent precise characterization of microstructure dynamics. Recently, experiments under low gravity conditions have been carried out jointly by NASA and CNES in the model transparent system succinonitrile-camphor on board the International Space Station using the Directional Solidification Insert in the DECLIC facility. After a brief description of the experimental setup and methods, the first results on dynamics of interface pattern formation obtained in microgravity will be presented and the information extracted from their quantitative analysis will be discussed.
机译:合金定向凝固中的关键微观结构之一是控制凝固材料的性能和可靠性的孔状/枝状结构。我们对固-液界面模式的定量理解主要来自于薄样品中的实验,其中显示出在动态生长过程中发生了微观结构选择。一种更现实的配置是检查三维结构的演变,这在地面上是不可能的,因为对流效应在大体积样品中占主导地位,并阻止了微观结构动力学的精确表征。最近,NASA和CNES在DECLIC设施中使用定向凝固插件在国际空间站上的透明系统丁二腈-樟脑模型中在低重力条件下进行了联合试验。在简要描述了实验装置和方法之后,将介绍在微重力下获得的界面图案形成动力学的第一个结果,并讨论从其定量分析中提取的信息。

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