ISSN: 1003-6326
CN: 43-1239/TG
CODEN: TNMCEW

Vol. 20    No. 12    December 2010

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Microstructure and frictional properties of
3D needled C/SiC brake materials modified with graphite
ZHANG Jian-xin(张建新)1, FAN Shang-wu(范尚武)1, ZHANG Li-tong(张立同)1,
CHENG Lai-fei(成来飞)1, YANG Shang-jie(杨尚杰)1, TIAN Guang-lai(田
(1. National Key Laboratory of Thermostructure Composite Materials,
Northwestern Polytechnical University, Xi’an 710072, China;
2. Xi’an Aviation Brake Technology Co., Ltd., Xi’an 713106, China
)
Abstract: The 3D needled C/SiC brake materials modified with graphite were prepared by a combined process of the chemical vapor infiltration, slurry infiltration and liquid silicon infiltration process. The microstructure and frictional properties of the brake materials were investigated. The density and open porosity of the materials as-received were about (2.1±0.1) g/cm3 and (5±1)%, respectively. The brake materials were composed of 59% C, 39% SiC, and 2% Si (mass fraction). The content of Si in the C/SiC brake materials modified with graphite was far less than that in the C/SiC brake materials without being modified with graphite, and the Si was dispersed. The braking curve of the 3D needled C/SiC modified with graphite was smooth, which can ensure the smooth and comfortable braking. The frictional properties under wet condition of the 3D needled C/SiC modified with graphite showed no fading. And the linear wear rate of the C/SiC modified with graphite was lower than that of the C/SiC unmodified.
Key words: 3D needled C/SiC; brake material; microstructure; frictional properties
Superintended by The China Association for Science and Technology (CAST)
Sponsored by The Nonferrous Metals Society of China (NFSOC)
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