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Study of pattern selection in 3D phase-field simulations during the directional solidification of ternary eutectic Al-Ag-Cu

机译:三元共晶Al-Cu定向凝固三维相场模拟模式选择的研究

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During the directional solidification of ternary eutectic alloys, different arrangements of the three solid phases evolve, leading to multiple microstructure patterns. These patterns influence the macroscopic properties of the alloy. Different arrangements are even found in single micrographs for the same imposed process conditions. Gaining a better understanding of the complex mechanisms leading to these different patterns is crucial to obtain tailored microstructures with specific properties. To exploit the different patterns which appear in ternary eutectic Al-Ag-Cu, a coupled approach is undertaken using a large-scale simulation and extensive parameter studies on smaller 3D domains. Three patterns found in both large-scale simulations as well as experimental micrographs are investigated with smaller domain size simulations by systematically varying the lamellar spacings. The resulting undercooling-spacing correlations of all investigated phase arrangements follow a Jackson-Hunt-type shape. Different stability ranges of the initially set microstructure are found, and depending on the lamellar spacings, the pattern with the lowest undercooling changes. The combination of both outcomes gives an explanation for the presence of different patterns within single micrographs of directionally solidified ternary eutectic alloys. (C) 2018 Elsevier B.V. All rights reserved.
机译:在三元共晶合金的定向凝固过程中,三个固相的不同布置演变,导致多种微观结构图案。这些模式影响合金的宏观性质。在单一显微照片中甚至发现不同的布置以进行相同的施加的过程条件。更好地了解导致这些不同模式的复杂机制是至关重要的,可以获得具有特定性质的量身定制的微观结构。为了利用三元共晶AL-CU中出现的不同模式,使用大规模模拟和较小的3D域的广泛参数研究进行耦合方法。通过系统地改变层间距,通过更小的域尺寸模拟来研究在大规模模拟中的三种模式以及实验显微照片。所得到的所有调查相排列的过冷间距相关性遵循杰克逊亨特型形状。最初设定的微结构的不同稳定范围被发现,并且取决于层状间距,该图案具有最低的过冷变化。两种结果的组合给出了在定向固化的三元共晶合金的单一显微照片中存在不同模式的解释。 (c)2018 Elsevier B.v.保留所有权利。

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