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激光冲击强化提高压气机叶片疲劳性能研究
引用本文:何卫锋,李应红,李伟,李玉琴,李启鹏.激光冲击强化提高压气机叶片疲劳性能研究[J].航空动力学报,2011,26(7):1551-1556.
作者姓名:何卫锋  李应红  李伟  李玉琴  李启鹏
作者单位:空军工程大学工程学院,西安,710038
摘    要:根据1Cr11Ni2W2MoV不锈钢材料性能,确定了激光冲击强化参数;并通过标准试片疲劳试验,验证了该参数条件下激光冲击强化提高不锈钢材料振动疲劳寿命的有效性.设计了不锈钢叶片振动疲劳试验,确定了叶片冲击强化部位和方式,对强化叶片进行了型面检查、一阶弯曲振动疲劳试验和强化机理研究.结果表明:激光冲击强化后的叶片各个截面...

关 键 词:激光冲击强化  压气机叶片  振动  疲劳寿命  残余应力
收稿时间:2010/5/13 0:00:00
修稿时间:2010/11/11 0:00:00

Laser shock peening on vibration fatigue behavior of compressor blade
HE Wei-feng,LI Ying-hong,LI Wei,LI Yu-qin and LI Qi-peng.Laser shock peening on vibration fatigue behavior of compressor blade[J].Journal of Aerospace Power,2011,26(7):1551-1556.
Authors:HE Wei-feng  LI Ying-hong  LI Wei  LI Yu-qin and LI Qi-peng
Institution:The Engineering Institute, Air Force Engineering University,Xi'an 710038,China;The Engineering Institute, Air Force Engineering University,Xi'an 710038,China;The Engineering Institute, Air Force Engineering University,Xi'an 710038,China;The Engineering Institute, Air Force Engineering University,Xi'an 710038,China;The Engineering Institute, Air Force Engineering University,Xi'an 710038,China
Abstract:According to the mechanical performance of the 1Cr11Ni2W2MoV stainless steel, the technical parameters of laser shock peening(LSP) were determined. The standard coupons with/without LSP were tested for examining the fatigue performance. It proves that LSP, with the selected parameters, can improve the stainless steel's vibration fatigue life remarkably. From the experiment results of coupons, the vibration fatigue experiment for the compressor blade in one certain aero-engine was designed according to the structure and loads of the blade. The treated zone was designed on the surface where the vibration stress is the most severe. In order to avoid macroscopical deformation, the blades were treated on both sides simultaneously. This confirms that different section parameters after LSP on the blade are within the range of design requests. The vibration fatigue results indicate that the S-N (stress-number of cycles) curve with LSP moves up as compared with that one without LSP. When the max vibratory stress was about 660MPa, the blade fatigue life with LSP was prolonged for 70%. Finally, the reasons were analyzed from the residual compressive stress and micro structure after LSP.
Keywords:laser shock peening  compressor blade  vibration  fatigue life  residual stress
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