Review on plasma sprayed oxidation resistant coatings for C/C composites

被引:1
作者
Li X. [1 ]
Fu Q. [1 ]
Hu D. [1 ]
机构
[1] Shaanxi Key Laboratory of Fiber Reinforced Light-Weight Composites, Northwestern Polytechnical University, Xi′an
来源
Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University | 2022年 / 40卷 / 03期
关键词
C/C composite; ceramic coating; high temperature; oxidation resistance; plasma spraying;
D O I
10.1051/jnwpu/20224030465
中图分类号
学科分类号
摘要
Oxidation sensitivity is a critical obstacle to the rapid development of carbon/carbon(C/C) composites as the thermal structural materials in aerospace applications. Currently, surface coating technology is the most effective method to achieve the long-term stable service of C/C composites in high temperature oxygen-containing environments. Among them, plasma spraying technology, which has been widely used in the preparation of thermal barrier coatings for aero-engines, has attracted much attention. In this paper, starting from the plasma sprayed high-temperature oxidation resistant coatings for C/C composites, domestic and international research progress of boride, silicide and oxide based oxidation resistant coatings have been reviewed, the protective properties based on different spraying technologies, composition/structure designs and service conditions have been compared and summarized, and the prospect future for subsequent research in this field has been proposed. © 2022 Journal of Northwestern Polytechnical University.
引用
收藏
页码:465 / 475
页数:10
相关论文
共 63 条
[1]  
MANOCHA L M., High performance carbon-carbon composites, Sadhana, 28, 1, pp. 349-358, (2003)
[2]  
CROCKER P, MCENANEY B., Oxidation and fracture of a woven 2D carbon-carbon composite, Carbon, 29, 7, pp. 881-885, (1991)
[3]  
HAN J C, HE X D, DU S Y., Oxidation and ablation of 3D carbon-carbon composite at up to 3 000°C, Carbon, 33, pp. 473-378, (1995)
[4]  
HUANG Jianfeng, ZHANG Yutao, LI Hejun, Et al., New advancement of oxidation protective coatings for C/C composites, Journal of Aeronautical Materials, 27, 2, pp. 74-78, (2007)
[5]  
FU Qiangang, Study on the SiC whisker-toughened silicides and SiC/glass oxidation protective coatings, (2007)
[6]  
CHOY K L., Chemical vapour deposition of coatings, Progress in Materials Science, 48, 2, pp. 57-170, (2003)
[7]  
ZHOU Qing, Preparation of fiber reinforced silicon carbide matrix composites by vapor or liquid silicon infiltration, (2008)
[8]  
ZHU X F, ZHANG Y L, ZHANG J, Et al., A gradient composite coating to protect SiC-coated C/C composites against oxidation at mid and high temperature for long-life service[J], Journal of the European Ceramic Society, 41, 16, pp. 123-131, (2021)
[9]  
SUN J, FU Q G, NIU G N, Et al., Thermal shock resistance of thermal barrier coatings for nickel-based superalloy by supersonic plasma spraying, Ceramics International, 41, 8, pp. 9972-9979, (2015)
[10]  
YANG Shanjie, PENG Hui, GUO Hongbo, Failure and protection of thermal barrier coating under CMAS attack, Journal of Aeronautical Materials, 39, 2, pp. 43-51, (2018)