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弹用混合式陶瓷轴承的开发研究
引用本文:王黎钦,李秀娟,古乐,齐毓霖,刘艳梅,刘振德.弹用混合式陶瓷轴承的开发研究[J].推进技术,2001,22(6):522-525.
作者姓名:王黎钦  李秀娟  古乐  齐毓霖  刘艳梅  刘振德
作者单位:1. 哈尔滨工业大学机械工程系,黑龙江,哈尔滨,150001
2. 航天机电集团公司31所,北京,100074
基金项目:哈尔滨工业大学跨学科交叉性研究基金(HIT.MD2000.10).
摘    要:为延长弹用涡喷发动机轴承的寿命、避免过早失效和提高其可靠性,在分析全钢轴承恶性失效形式的基础上,根据工况对轴承性能的要求研制了混合式陶瓷轴,承用拟静力学分析方法对比分析了全钢轴承和混合式陶瓷轴承的性能指标,台架实验表明了陶瓷轴承以疲劳逐步扩展的良性失效形式为主要失效形式,能够克服全钢轴承在高速高温重载限量润滑条件下发生热失稳、咬死等恶性故障,对高速恶化工况有很好的适应性。

关 键 词:弹用涡轮喷气发动机  混合式陶瓷轴承  失效形式  全钢轴承  热失稳故障
文章编号:1001-4055(2001)06-0522-04
修稿时间:2001年4月18日

Research on hybrid ceramic bearings for missile turbojet engines
WANG Li qin,LI Xiu juan,QI Yu lin,LIU Yan mei,LIU Yan mei and LIU Zhen de.Research on hybrid ceramic bearings for missile turbojet engines[J].Journal of Propulsion Technology,2001,22(6):522-525.
Authors:WANG Li qin  LI Xiu juan  QI Yu lin  LIU Yan mei  LIU Yan mei and LIU Zhen de
Institution:Dept.of Mechanical Engineering,Harbin Inst. of Technology, Harbin 150001 China;Dept.of Mechanical Engineering,Harbin Inst. of Technology, Harbin 150001 China;Dept.of Mechanical Engineering,Harbin Inst. of Technology, Harbin 150001 China;Dept.of Mechanical Engineering,Harbin Inst. of Technology, Harbin 150001 China;The 31st Research Institute, Beijing 100074 China;The 31st Research Institute, Beijing 100074 China
Abstract:To increase the service life, prevent the premature failure and improve the reliability of rolling bearings used in the missile turbojet engines, based on the analyses of all steel bearing failure with related working conditions,a kind of hybrid ceramic bearing which performances were compared with those of all steel bearings through quasi-static mechanics analyses were developed. Bench tests showed that ceramic bearings have a benign failure mode of gradual fatigue instead of catastrophic failures of thermal instability, seizure or dead lock which are very common for all steel bearings under the working conditions of high speed, high temperature, heavy load and limited lubricant. So ceramic bearings can totally meet such stringent demands in missile turbojet engines.
Keywords:Turbojet engine  Failure analysis  Ceramic  Aircraft bearing  Non  metallic bearing
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