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Combinatorial Strategies for Synthesis and Characterization of Alloy Microstructures over Large Compositional Ranges

机译:大组成范围内合金微观结构的合成与表征的组合策略

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The exploration of new alloys with desirable properties has been a long-standing challenge in materials science because of the complex relationship between composition and microstructure. In this Research Article, we demonstrate a combinatorial strategy for the exploration of composition dependence of microstructure. This strategy is comprised of alloy library synthesis followed by high throughput microstructure characterization. As an example, we synthesized a ternary Au-Cu-Si composition library containing over 1000 individual alloys using combinatorial sputtering. We subsequently melted and resolidified the entire library at controlled cooling rates. We used scanning optical microscopy and X-ray diffraction mapping to explore trends in phase formation and microstructural length scale with composition across the library. The integration of combinatorial synthesis with parallelizable analysis methods provides a efficient method for examining vast compositional ranges. The availability of microstructures from this vast composition space not only facilitates design of new alloys by controlling effects of composition on phase selection, phase sequence, length scale, and overall morphology, but also will be instrumental in understanding the complex process of microstructure formation in alloys.
机译:由于成分和微观结构之间的复杂关系,探索具有理想性能的新合金一直是材料科学领域的长期挑战。在这篇研究文章中,我们展示了一种探索微观结构成分依赖性的组合策略。该策略包括合金库合成,然后进行高通量微观结构表征。例如,我们使用组合溅射法合成了包含1000多种单独合金的三元Au-Cu-Si成分库。随后,我们在受控的冷却速率下融化并重新固化了整个库。我们使用扫描光学显微镜和X射线衍射图谱来探索相形成和微观结构长度尺度的趋势以及整个文库中的成分。组合合成与可并行分析方法的集成提供了一种有效的方法,可用于检查广泛的组成范围。从巨大的成分空间中获得微结构不仅可以通过控制成分对相选择,相序,长度尺度和整体形态的影响来促进新合金的设计,而且还将有助于理解合金中微结构形成的复杂过程。

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