Processing and properties of high entropy carbides

IF 1.3 4区 材料科学 Q3 MATERIALS SCIENCE, CERAMICS Advances in Applied Ceramics Pub Date : 2021-12-17 DOI:10.1080/17436753.2021.2014277
Yichen Wang
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引用次数: 28

Abstract

ABSTRACT High entropy carbides (HECs) are novel materials developed in recent years that have attracted a lot of research interests. Unlike traditional carbides (containing one or two metals), HECs with multiple metals could form a very large number of different compositions that could have interesting and promising properties. The high entropy effect stabilises multi-component carbide phases and forms compositions that might otherwise not be stable. After several years of investigation of HECs, several methods of synthesising HECs have been developed. The microstructures and properties of HECs have been studied and compared with traditional carbides. Many interesting discoveries in HECs have been made. This paper reviews the theories, technologies, findings and insights gained from previous studies on HECs. The basic theory of HECs, the prediction of synthesisability of HEC phases from theoretical calculations, and some rules observed from experimental results are summarised. The preparation methods of HECs (powders, coatings, films and ceramics) and their microstructures are reviewed. Their properties, including thermal and electrical, mechanical and tribological, and oxidation, irradiation, and corrosion resistance of HECs are reviewed and discussed. Compared with traditional carbides, there is a great potential to develop new HECs due to their designable and complex compositions, and this review can guide future studies.
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高熵碳化物的制备及性质
高熵碳化物(hec)是近年来发展起来的新型材料,引起了人们的广泛关注。与传统的碳化物(含有一种或两种金属)不同,含有多种金属的HECs可以形成大量不同的成分,这些成分可能具有有趣和有前途的性质。高熵效应稳定了多组分碳化物相,形成了原本不稳定的成分。经过几年对hec的研究,已经发展出几种合成hec的方法。研究了HECs的微观结构和性能,并与传统碳化物进行了比较。hec中有许多有趣的发现。本文综述了hec研究的理论、技术、发现和见解。总结了HEC的基本理论、理论计算对HEC相可合成性的预测以及实验结果观察到的一些规律。综述了hec(粉末、涂层、薄膜和陶瓷)的制备方法及其显微结构。综述和讨论了其热学、电学、力学、摩擦学、抗氧化、耐辐照、耐腐蚀等性能。与传统碳化物相比,新型碳化物具有可设计性和复杂的组成,具有很大的开发潜力,对今后的研究具有指导意义。
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来源期刊
Advances in Applied Ceramics
Advances in Applied Ceramics 工程技术-材料科学:硅酸盐
CiteScore
4.40
自引率
4.50%
发文量
17
审稿时长
5.2 months
期刊介绍: Advances in Applied Ceramics: Structural, Functional and Bioceramics provides international coverage of high-quality research on functional ceramics, engineering ceramics and bioceramics.
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