Synthesis of single-phase (ZrTiTaNbMo)C high-entropy carbide powders via magnesiothermic reduction process
Baoqiang Li
1
,
Chain Tsuan Liu
1, 2
,
Zheng Fang
3
,
Zongxian Yang
1, 2
,
F Ding
1
,
Lin Bai
3
,
Chun Wang
4
,
Fangli Yuan
5, 6
4
Science and Technology on Power Beam Processes Laboratory, AVIC Manufacturing Technology Institute, Beijing 100024, PR China
|
6
Key Laboratory of Science and Technology on Particles Materials, Chinese Academy of Sciences (CAS), Beijing 100190, PR China
|
Publication type: Journal Article
Publication date: 2022-12-01
scimago Q1
wos Q1
SJR: 1.300
CiteScore: 11.5
Impact factor: 6.2
ISSN: 09552219, 1873619X
Materials Chemistry
Ceramics and Composites
Abstract
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at relatively low temperature is challenging. Here, we report the first synthesis of (ZrTiTaNbMo)C high-entropy carbide (HEC) powders via magnesiothermic reduction process. In this, a mixture of individual metallic oxides, graphite and magnesium is treated at a temperature of 1350 °C under Ar atmosphere. The (ZrTiTaNbMo)C powders are obtained after acid leaching, deionized water cleaning and drying process, and synthesized powders shows single-phase face-centered cubic ( fcc ) structure with the oxygen content of only 0.35 wt% and particle-size range of 5–60 µm. Such powders are in potential demand for additive manufacturing techniques, while high dense HEC bulk ceramic is fabricated by hot pressing sintering using ball-milled HEC powders in preliminary researches. The successful synthesis of (ZrTiTaNbMo)C powders may guide the way towards synthesis of many other high-entropy carbide powders via magnesiothermic reduction process. • Magnesiothermic reduction was used to prepare single-phase (ZrTiTaNbMo)C powders. • The oxygen content of (ZrTiTaNbMo)C powders was as low as 0.35 wt%. • As-prepared (ZrTiTaNbMo)C powders possessed high compositional uniformity. • High dense (ZrTiTaNbMo)C bulk ceramic with hardness of 22.0 ± 1.7 GPa was obtained.
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Total citations:
16
Citations from 2024:
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(68.75%)
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Li B. et al. Synthesis of single-phase (ZrTiTaNbMo)C high-entropy carbide powders via magnesiothermic reduction process // Journal of the European Ceramic Society. 2022. Vol. 42. No. 15. pp. 6767-6773.
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Li B., Liu C. T., Fang Z., Yang Z., Ding F., Bai L., Wang C., Yuan F. Synthesis of single-phase (ZrTiTaNbMo)C high-entropy carbide powders via magnesiothermic reduction process // Journal of the European Ceramic Society. 2022. Vol. 42. No. 15. pp. 6767-6773.
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TY - JOUR
DO - 10.1016/j.jeurceramsoc.2022.08.025
UR - https://doi.org/10.1016/j.jeurceramsoc.2022.08.025
TI - Synthesis of single-phase (ZrTiTaNbMo)C high-entropy carbide powders via magnesiothermic reduction process
T2 - Journal of the European Ceramic Society
AU - Li, Baoqiang
AU - Liu, Chain Tsuan
AU - Fang, Zheng
AU - Yang, Zongxian
AU - Ding, F
AU - Bai, Lin
AU - Wang, Chun
AU - Yuan, Fangli
PY - 2022
DA - 2022/12/01
PB - Elsevier
SP - 6767-6773
IS - 15
VL - 42
SN - 0955-2219
SN - 1873-619X
ER -
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BibTex (up to 50 authors)
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@article{2022_Li,
author = {Baoqiang Li and Chain Tsuan Liu and Zheng Fang and Zongxian Yang and F Ding and Lin Bai and Chun Wang and Fangli Yuan},
title = {Synthesis of single-phase (ZrTiTaNbMo)C high-entropy carbide powders via magnesiothermic reduction process},
journal = {Journal of the European Ceramic Society},
year = {2022},
volume = {42},
publisher = {Elsevier},
month = {dec},
url = {https://doi.org/10.1016/j.jeurceramsoc.2022.08.025},
number = {15},
pages = {6767--6773},
doi = {10.1016/j.jeurceramsoc.2022.08.025}
}
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Li, Baoqiang, et al. “Synthesis of single-phase (ZrTiTaNbMo)C high-entropy carbide powders via magnesiothermic reduction process.” Journal of the European Ceramic Society, vol. 42, no. 15, Dec. 2022, pp. 6767-6773. https://doi.org/10.1016/j.jeurceramsoc.2022.08.025.
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