Citation: | Hu Yanhui, Zhong Qunpeng, Zhang Zheng, et al. Fatigue property and its probabilistic character of S06 steel[J]. Journal of Beijing University of Aeronautics and Astronautics, 2009, 35(10): 1206-1209. (in Chinese) |
[1] 王磊,刘文珽.飞机结构疲劳关键部位损伤与可靠性评定技术[J].北京航空航天大学学报, 2008, 34(1):84-87 Wang Lei, Liu Wenting. Technology on evaluating damage and reliability of aircraft structure fatigue critical parts[J]. Journal of Beijing University of Aeronautics and Astronautics, 2008, 34(1):84-87(in Chinese) [2] 高镇同,傅惠民.疲劳强度的概率分布和疲劳强度特征函数[J].机械强度, 1985, 2:27-34 Gao Zhentong, Fu Huimin. The probabilistic distribution and characteristic function of fatigue strength [J]. Journal of Mechanical Strength, 1985, 2: 27-34(in Chinese) [3] Nishijima S, Kanazawa K. Stepwise S-N curve and fish-eye failure in gigacycle fatigue[J]. Fatigue & Fracture of Engineering Materials & Structures, 1999, 22:601-607 [4] Marines I, Bin X, Bathias C. An understanding of very high cycle fatigue of metals[J]. International Journal of Fatigue, 2003, 25:1101-1107 [5] Bayraktar E, Garcias I M, Bathias C. Failure mechanisms of automotive metallic alloy in very high cycle fatigue range[J]. International Journal of Fatigue, 2006, 28:1590-1602 [6] 中国电子技术标准化研究所.可靠性试验用表[M].北京:国防工业出版社, 1987:9 China Electronic Standardization Institute. Tables for reliability test[M]. Beijing: National Defence Industrial Publishing Company, 1987:9(in Chinese) [7] Jing Ling, Jwo Pan. A maximum likelihood method for estimating P-S-N curves[J]. International Journal of Fatigue, 1997, 19(5):415-419
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