Research Paper

Preparation and Tribological Properties of C/SiC Friction Materials

  • FAN Shang-Wu ,
  • XU Yong-Dong ,
  • ZHANG Li-Tong ,
  • CHENG Lai-Fei ,
  • LOU Jian-Jun
Expand
  • National Key Laboratory of Thermostructure Composite Materials, Northwestern
    Polytechnical University, Xi'an, 710072, China

Received date: 2005-08-01

  Revised date: 2005-09-19

  Online published: 2006-07-20

Abstract

The cost effective and high performance carbon/silicon carbide aircraft friction materials were prepared by the combination of chemical vapor infiltration (CVI) and reactive melt infiltration (RMI). The tribological properties of the as-manufactured C/SiC composites were measured under the simulated conditions of normal landing of the aircraft. The test results indicate the more excellent
tribological properties of C/SiC composites than that of C/C composites. The average coefficients of kinetic friction and static friction are about 0.34 and 0.41, respectively, the wet fading ratio is about 2.9%, the linear wear rate is less then 1.9μm·cycle-1, and the coefficient of friction is stable. The surface microstructure and wear debris on wear-induced surfaces of C/SiC disks were investigated by optical microscope and SEM. The results indicate that the main wear mechanism of the C/SiC composites is the grain-abrasion. The wear resistance is improved due to the enhanced in-plane shear strength derived from the fiber bundle vertical to the friction surface.

Cite this article

FAN Shang-Wu , XU Yong-Dong , ZHANG Li-Tong , CHENG Lai-Fei , LOU Jian-Jun . Preparation and Tribological Properties of C/SiC Friction Materials[J]. Journal of Inorganic Materials, 2006 , 21(4) : 927 -934 . DOI: 10.3724/SP.J.1077.2006.00927

References

1 罗瑞盈. 炭素技术, 2001, (4): 27-29.
2 颜月娥, 黄启忠, 邹林华, 等. 新型炭材料, 1996, 11 (3): 13-17.
3 罗瑞盈, 李贺军, 杨峥, 等. 新型炭材料, 1995, 10 (3): 61-64.
4 Chen J D, Chern Lin J H, Ju C P. Wear, 1996, 193: 38-47.
5 Gouider M, Berthier Y, Jacquemard P, et al. Wear, 2004, 256 (11-12): 1082-1087.
6 Krenkel W, Heidenreich B, Renz R. Advanced Engineering Materials, 2002, 4 (7): 427-436.
7 杨尊社, 德全, 陈志军, 等. 新型炭材料, 1999, 14 (4): 75-78.
8 Krenkel W. Ceramic Engineering and Science Proceedings, 2003, 24 (4): 583-592.
9 Krenkel W. Ceramic Engineering and Science Proceedings, 2002, 23 (3): 319-329.
10 M\ddot uhlratzer A, Leuchs M. Proceedings of the 4 th International conference on HT-CMC, Munich, Germany, 2001. 288-298.
11 Krenkel W, Henke T. Key Engineering Materials, 1999, 164-165: 421-424.
12 Vaidyaraman S, Purdy M, Walker T, et al. Proceedings of the 4 th International
conference on HT-CMC, Munich, Germany, 2001. 802-808.
13 Pak Z S. Proceedings of the 4 th International conference on HT-CMC, Munich,
Germany, 2001. 820-825.
14 马运柱, 熊翔, 黄伯云, 等. 中南工业大学学报, 2002, 33 (1): 49-52.
15 马运柱, 熊翔, 李江鸿, 等. 中国有色金属学报, 2003, 13 (11): 211-215.
16 王林山, 熊翔, 肖鹏. 矿冶工程, 2003, 23 (2): 77-83.
17 罗瑞盈.宇航材料工艺, 1997, (5): 7-10.
18 毕燕洪, 金志浩. 材料工程, 2003, (3): 44-46.
19 Murdie N, Ju C P, Do J n, et al. Carbon, 1991, 29 (3): 335-342.
Outlines

/