SYNTHESIS AND CHARACTERISATION OF SiC-ZrB2 COMPOSITE POWDERS BY CARBOTHERMAL/BOROTHERMAL REDUCTION REACTION

被引:0
|
作者
Cao, Yu [1 ,2 ]
Li, Yueming [1 ]
Li, Kai [1 ]
Deng, Junjie [2 ]
Zou, Chuanming [1 ]
Hu, Jilin [2 ]
Chen, Zhanjun [2 ]
Wen, Jin [2 ]
机构
[1] China National Light Industry Key Laboratory of Functional Ceramic Materials, School of Materials Science and Engineering, Jingdezhen Ceramic University, Jingdezhen,333403, China
[2] Hunan Provincial Key Laboratory of Fine Ceramics and Powder Materials, School of Materials and Environmental Engineering, Hunan University of Humanities, Science and Technology, Loudi,417000, China
关键词
Silicon carbide;
D O I
10.13168/cs.2024.0058
中图分类号
学科分类号
摘要
Four raw materials, namely, zirconium silicate, silica sol, boric acid, and graphite, were slected as precursor materials. Silicon carbide (SiC)-zirconium borate (ZrB2) ceramic composite powders were prepared via carbothermal/borothermal reduction in a high-temperature tube furnace under an argon atmosphere. The effects of the boric acid dosage and calcination temperature on the phase composition and microstructure of the SiC-ZrB2 composite powders were investigated. The results showed that when the amount of H3BO3 added was the theoretical amount (i.e., 0 wt. % in excess) or 10 wt. % in excess, SiC-ZrB2 composite powders containing a certain amount of graphite could be prepared by holding at 1550 – 1650 °C for 2 h. When the amount of boric acid was 20 wt. % in excess, SiC-ZrB2 composite powders with a high purity were obtained at a calcination temperature of 1650 °C. When the amount of boric acid was 30 wt. % in excess, SiC-ZrB2 composite powders with a high purity were successfully prepared at a calcination teperature higher than 1600 °C. In addition, when the amount of boric acid was 20 wt. % in excess, a large amount of bamboo-like whisker materials with a diameter of approximately 50 – 200 nm appeared in the poder samples. These materials overlapped and were wound together. When the amount of boric acid was 30 wt. % in excess, the powder samples prepared at 1600 – 1650 °C formed a diverse microstructure consisting of flaky, spherical, and columnar particles and whisker-like substances. © 2024 University of Chemistry and Technology, Faculty of Environmental Technology. All rights reserved.
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页码:598 / 609
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