The high-entropy carbides (HECs) are reviewed in terms of the crystal structure, powder synthesis, densification, and mechanisms in this article. The inter-diffusion rate of binary carbide is mainly analyzed and predicted based on lattice parameters. During the solid solution formation progress, the densification methods usually adopted were hot pressing and spark plasma sintering. It was found that the distribution of metal atoms was more uniform in high-entropy powders derived from binary carbide raw materials. HECs displayed higher hardness, elastic modulus, and oxidation resistance, and meanwhile exhibited lower thermal conductivity compared to binary carbides. HECs are expected to be used as high-speed atmospheric re-entry vehicles. (C...
High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sit...
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at rel...
Support from the projects APVV-15-0469, APVV-15-0621, VEGA 2/0163/16, and VEGA 2/0082/17 is acknowle...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
High-entropy alloy (HEA) is a multicomponent alloy material that contains five or more principal ele...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
This work is on the understanding and development of high entropy transition metal carbides. As ultr...
The research was supported by the EPSRC Programme Grant XMAT [EP/K008749/2]. The authors gratefully ...
The everlasting demands of new materials to fulfill certain functional or structural applications st...
High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sit...
The thermal and electrical properties were measured for a high entropy carbide ceramic, consisting o...
This master thesis is a follow-up of my bachelor's project, where the goal was to prepare high entro...
A novel, homogeneous, nanostructured and equiatomic (TiZrHfVNb)C High Entropy Carbide (HEC) was succ...
High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sit...
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at rel...
Support from the projects APVV-15-0469, APVV-15-0621, VEGA 2/0163/16, and VEGA 2/0082/17 is acknowle...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
High-entropy alloy (HEA) is a multicomponent alloy material that contains five or more principal ele...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
This work is on the understanding and development of high entropy transition metal carbides. As ultr...
The research was supported by the EPSRC Programme Grant XMAT [EP/K008749/2]. The authors gratefully ...
The everlasting demands of new materials to fulfill certain functional or structural applications st...
High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sit...
The thermal and electrical properties were measured for a high entropy carbide ceramic, consisting o...
This master thesis is a follow-up of my bachelor's project, where the goal was to prepare high entro...
A novel, homogeneous, nanostructured and equiatomic (TiZrHfVNb)C High Entropy Carbide (HEC) was succ...
High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sit...
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at rel...
Support from the projects APVV-15-0469, APVV-15-0621, VEGA 2/0163/16, and VEGA 2/0082/17 is acknowle...