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High-Throughput Screening Across Quaternary Alloy Composition Space: Oxidation of (AlxFeyNi1-x-y)(similar to 0.8)Cr-similar to 0.2

机译:跨四元合金组成空间的高通量筛选:(AlxFeyNi1-x-y)(约0.8)Cr-约0.2的氧化

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摘要

Composition spread alloy films (CSAFs) are commonly used as libraries for high-throughput screening of composition-property relationships in multicomponent materials science. Because lateral gradients afford two degrees of freedom, an n-component CSAF can, in principle, contain any composition range falling on a continuous two-dimensional surface through an (n - 1)-dimensional composition space. However, depending on the complexity of the CSAF gradients, characterizing and graphically representing this composition range may not be straightforward when n >= 4. The standard approach for combinatorial studies performed using quaternary or higher-order CSAFs has been to use fixed stoichiometric ratios of one or more components to force the composition range to fall on some well-defined plane in the composition space. In this work, we explore the synthesis of quaternary Al-Fe-Ni-Cr CSAFs with a rotatable shadow mask CSAF deposition tool, in which none of the component ratios are fixed. On the basis of the unique gradient geometry produced by the tool, we show that the continuous quaternary composition range of the CSAF can be rigorously represented using a set of two-dimensional "pseudoternary" composition diagrams. We then perform a case study of (AlxFeyNi1-x-y)(similar to 0.8)Cr-similar to 0.2 oxidation in dry air at 427 +/- C to demonstrate how such CSAFs can be used to screen an alloy property across a continuous two-dimensional subspace of a quaternary composition space. We identify a continuous boundary through the (AlxFeyNi1-x-y)(similar to 0.8)Cr-similar to 0.2 subspace at which the oxygen uptake into the CSAF between 1 and 16 h oxidation time increases abruptly with decreasing Al content. The results are compared to a previous study of the oxidation of AlxFeyNi1-x-y CSAFs in dry air at 427 +/- C.
机译:成分扩展合金膜(CSAF)通常用作多组分材料科学中用于高通量筛选成分-性质关系的库。因为横向梯度提供两个自由度,所以n分量CSAF原则上可以包含通过(n-1)维构图空间落在连续二维表面上的任何构图范围。但是,取决于CSAF梯度的复杂性,当n> = 4时,表征和以图形方式表示该组成范围可能并不简单。使用四级或更高级CSAF进行组合研究的标准方法是使用固定的化学计量比一个或多个迫使合成范围落在合成空间中某个明确平面上的组件。在这项工作中,我们探索了使用可旋转的荫罩CSAF沉积工具合成四元Al-Fe-Ni-Cr CSAF的方法,其中没有固定的组分比率。基于该工具产生的独特渐变几何,我们显示出可以使用一组二维“伪三元”组成图来严格表示CSAF的连续四元组成范围。然后,我们进行了一个案例研究(AlxFeyNi1-xy)(类似于0.8)Cr-类似于在427 +/- C的干燥空气中进行0.2氧化,以证明如何使用这种CSAF来筛选连续的两个四元合成空间的维子空间。我们通过(AlxFeyNi1-x-y)(类似于0.8)Cr-类似于0.2子空间确定了一个连续边界,在该子空间中,在1和16 h氧化时间之间吸收到CSAF中的氧随着Al含量的减少而突然增加。将结果与先前在427 +/- C的干燥空气中氧化AlxFeyNi1-x-y CSAFs的研究进行了比较。

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