难熔元素对四元高熵碳化物特性的影响--第一原理和实验研究

IF 3.1 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
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引用次数: 0

摘要

本文通过第一性原理计算和实验研究了难熔过渡金属元素对由ⅣB、ⅤB和ⅥB过渡金属与C元素组成的四元等摩尔比高熵碳化物性质的影响。计算结果表明,75 种高熵碳化物均具有热力学和机械稳定性,并能自发形成,其中铪能促进高熵碳化物的合成,而铬的作用恰恰相反。此外,除 (TiZrHfCr)C 和 (ZrHfVCr)C 外,其他 73 种高熵碳化物都能形成单相固溶体结构。随后,比较了这 75 种四元 HEC 的机械性能。计算结果表明,W、Mo 和 Ta 对提高高熵碳化物的弹性模量、断裂韧性、硬度和熔点有积极作用,而 Cr 的作用则相反。声子光谱计算结果表明,以 (TiHfNbTa)C、(TiVNbTa)C、(TiZrNbTa)C、(TiZrNbCr)C、(TiZrNbMo)C 和 (TiZrNbW)C 为代表的六种高熵碳化物具有晶格动态稳定性。采用火花等离子烧结法制备了(TiHfNbTa)C、(TiVNbTa)C、(TiZrNbTa)C、(TiZrNbMo)C和(TiZrNbW)C面心立方高熵碳化物,并对其显微结构和性能进行了测试。实验结果与计算结果基本一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The effects of refractory elements on the properties of quaternary high entropy carbides—A first-principles and experiment study

The effects of refractory elements on the properties of quaternary high entropy carbides—A first-principles and experiment study

In this work, the effects of refractory transition metal elements on the properties of quaternary equimolar ratio high entropy carbides composed of ⅣB, ⅤB and ⅥB transition metals and C element were studied by first-principles calculations and experiments.The calculation results show that all 75 kinds of high entropy carbides were thermodynamically and mechanically stable and can be formed spontaneously. Among them, Hf can promote the synthesis of high entropy carbides, while Cr has the opposite effect. In addition, single phase solid solution structures can be formed for all 73 HECs except (TiZrHfCr)C and (ZrHfVCr)C. Thereafter, the mechanical properties of these 75 quaternary HECs were compared. The calculation results show that W, Mo, and Ta have a positive effect on improving the elastic modulus, fracture toughness, hardness and melting point of high entropy carbides, while Cr has the opposite effect. The calculation results of phonon spectra show that the six high entropy carbides represented by (TiHfNbTa)C, (TiVNbTa)C, (TiZrNbTa)C, (TiZrNbCr)C, (TiZrNbMo)C and (TiZrNbW)C have lattice dynamic stability. (TiHfNbTa)C, (TiVNbTa)C, (TiZrNbTa)C, (TiZrNbMo)C and (TiZrNbW)C face-centered cubic high entropy carbides were prepared by spark plasma sintering and the microstructure and properties were tested. The experimental results are basically consistent with the calculated results.

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来源期刊
Computational Materials Science
Computational Materials Science 工程技术-材料科学:综合
CiteScore
6.50
自引率
6.10%
发文量
665
审稿时长
26 days
期刊介绍: The goal of Computational Materials Science is to report on results that provide new or unique insights into, or significantly expand our understanding of, the properties of materials or phenomena associated with their design, synthesis, processing, characterization, and utilization. To be relevant to the journal, the results should be applied or applicable to specific material systems that are discussed within the submission.
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