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首页> 外文期刊>Scripta materialia >Computational Assessment of the Efficacy of Oxidation-Resistant Iridium Coatings for Multiple Principal Component Rhenium Substitutes
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Computational Assessment of the Efficacy of Oxidation-Resistant Iridium Coatings for Multiple Principal Component Rhenium Substitutes

机译:计算抗氧化铱涂层对多个主要成分铼替代物的疗效的计算评估

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摘要

Rhenium is an advanced engineering material valued for its performance under rapid thermal cycling to high temperatures. Due to rhenium's high cost, alternatives are actively being sought, and hexagonal close packed multiple principal component alloys consisting of Mo, W, Ta and Ru have been previously identified as a promising candidate. Here we assess whether the use of iridium coatings, a widely adopted approach to limit the oxidation of Re, can also be used with this candidate alloy. Specifically, we quantify, through atomistic computations based on density functional theory, the relative diffusion rates of the constituent elements through the protective Ir coating, which is known to be a dominant failure mechanism. (C) 2020 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:铼是一种先进的工程材料,可在快速热循环到高温下的性能。 由于铼的高成本,正在积极寻求替代品,并以先前被确定为一个有前途的候选者,六角形紧密包装的多个主要成分合金已被确定为一个有前途的候选者。 在这里,我们评估是否使用铱涂层,广泛采用的方法来限制RE的氧化,也可以与该候选合金一起使用。 具体地,通过基于密度函数理论的原子计算来量化,构成元件通过保护IR涂层的相对扩散速率,这已知是主要的失效机制。 (c)2020 Acta Materialia Inc. eSeryvier有限公司发布所有权利。

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