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Microstructures Observed During Directional Solidification Along The Univariant Eutectic Reaction In A Ternary Al-Cu-Si Alloy

机译:在三元铝 - 铜合金中沿非耐共晶反应的定向凝固期观察到的微观结构

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Within the frame of the ESA research program SETA, "Solidification along a Eutectic Path in Ternary Alloys", experiments have been performed focussing on several distinct subtopics. One of these subtopics is to study coupled growth along the univariant eutectic reaction: L → α + β. In this paper, the influence of the growth velocity v on the morphology of the solid/liquid interface is evaluated in a ternary Al-Cu-Si alloy with a composition close to the univariant eutectic groove L → α(Al) + θ-Al_2Cu. Different structural regions can be identified in terms of the stability of the solid-liquid interface (morphological stability) and the stability of the coupling (competitive growth) during unidirectional solidification as function of the solidification parameters. It is found that two-phase planar growth with a lamellar arrangement can be obtained at a sufficiently low growth rate v. The measured interlamellar spacing follows the Jackson and Hunt relationship λ~2v = constant. At a higher growth velocity first a destabilisation of the solid/liquid interface is observed and finally competitive growth is observed revealing primary θ-Al_2Cu growing ahead of the eutectic interface. It is assumed that the cellular break-up is a two-step process related to the crystallography of the system. Fitting the different morphologies into one microstructure map, an extension of the coupled zone concept as has been proposed for binary alloys is necessary.
机译:在ESA研究程序SETA的框架内,“沿三元合金中的共晶路径凝固”,已经在几个不同的骨囊上进行了重叠的实验。这些副检测器之一是研究沿非急性共晶反应的耦合生长:L→α+β。在本文中,在三元Al-Cu-Si合金中评价生长速度V对固体/液体界面形态的影响,其与靠近非亚胺共晶槽L→α(Al)+θ-Al_2Cu的组合物。根据固体液体界面(形态稳定性)的稳定性,可以识别不同的结构区域,以及在单向凝固过程中耦合(竞争生长)的稳定性,作为凝固参数的功能。结果发现,可以以足够低的生长速率v获得具有层状布置的两相平面生长。测量的层间距遵循杰克逊和捕冲关系λ~2v=常数。在较高的生长速度下,首先观察到固体/液体界面的稳定化,并且最终观察到涉及在共晶界面之前生长的初级θ-AL_2CU的竞争生长。假设细胞分解是与系统的晶体相关有关的两步过程。将不同的形态拟合到一个微结构图中,所以必须为二元合金提出的耦合区域概念的延伸是必要的。

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