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C/C复合材料飞机刹车盘的结构与性能
引用本文:苏君明,杨军,肖志超,周绍建,彭志刚,辛建国,李睿,韩媚,赵胜利,谷立民.C/C复合材料飞机刹车盘的结构与性能[J].新型炭材料,2006,21(1):81-89.
作者姓名:苏君明  杨军  肖志超  周绍建  彭志刚  辛建国  李睿  韩媚  赵胜利  谷立民
作者单位:1. 西安航天复合材料研究所,超码复合材料公司,陕西,西安,710025
2. 国际航空工程技术分公司,西南维修基地附件部,四川,成都,610202
摘    要:采用企业、行业及国家相关标准的试验方法,对超码复合材料公司,英国Dunlop公司,法国CarbonIn-dusty公司,美国B.F.Goodrich、ALS公司等生产的9种C/C复合材料飞机刹车盘的物理、力学、热学、摩擦磨损的性能特征,以及中南大学生产的C/C复合材料刹车盘的有关性能,进行了对比分析。结果表明,选择适宜的炭纤维预制体结构,控制热解炭基体微观结构为光学粗糙层结构,合理的热处理温度是获得高性能炭刹车盘材料的关键。我国拥有自主知识产权研发的大型民机炭刹车盘在高摩擦特性方面获得了重大突破,已用于波音757—200型飞机,实现了国内C/C复合材料具有里程碑意义的第四个重大突破。

关 键 词:飞机炭刹车盘  C/C复合材料  力学性能  热学性能  摩擦磨损特性
文章编号:1007-8827(2006)01-0081-09
收稿时间:2005-09-29
修稿时间:2006-02-10

Structure and properties of carbon/carbon composite materials for aircraft brake discs
SU Jun-ming,YANG Jun,XIAO Zhi-chao,ZHOU Shao-jian,PENG Zhi-gang,XIN Jian-guo,LI Rui,HAN Mei,ZHAO Sheng-li,GU Li-min.Structure and properties of carbon/carbon composite materials for aircraft brake discs[J].New Carbon Materials,2006,21(1):81-89.
Authors:SU Jun-ming  YANG Jun  XIAO Zhi-chao  ZHOU Shao-jian  PENG Zhi-gang  XIN Jian-guo  LI Rui  HAN Mei  ZHAO Sheng-li  GU Li-min
Abstract:Mechanical, physical, thermal, frictional and wear properties of nine carbon/carbon composite materials as aircraft brake discs made by the Chaoma composite material company, Dunlop, Carbon Industry company, B. F. Goodrich, ALS and South-middle University were characterized and compared. Correlation of raw materials and processing parameters by which they were made with their performance was also investigated. Results indicated that an optimum structure of the carbon fiber preform, heat treat temperature, and controlled pyrolysis to form a carbon matrix with a rough laminar microstructure are the key factors to obtain carbon brake disc materials with excellent properties. Homemade carbon brake discs of high quality for large civil aircraft, such as the Boeing 757-200, could be regarded as a breakthrough in the carbon/carbon materials field in China.
Keywords:Aircraft brake disc  Carbon/carbon composite material  Mechanical property  Thermal property  Friction and wear property
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