[1]Lee K O, Bae K H, Lee S B. Comparison of Prediction Methods for Low-cycle Fatigue Life of HIP Superalloys at Elevated Temperatures for Turbopump Reliability[J]. Materials Science and Engineering A, 2009, 519: 112-120.
[2]吕海波,姚卫星.元件疲劳可靠性估算的剩余强度模型[J].航空学报,2000,21(1):74-77.
[3]周迅[1],俞小莉[1],李迎[1].弯曲疲劳载荷下曲轴剩余强度的简化试验模型[J].兵工学报,2006,27(4):712-715.
[4]Chien W Y, Pan J, Close D, et al. Fatigue Analysis of Crankshaft Sections under Bending with Consid- eration of Residual Stresses[J]. International Journal of Fatigue, 2005, 27: 1-19.
[5]Silva F S. Fatigue on Engine Pistons-A Compendium of Case Studies[J]. Engineering Failure Analysis, 2006, 13: 480-492.
[6]Karadeniz H. Uncertainty Modeling in the Fatigue Reliability Calculation of Offshore Structures [J]. Reliability Engineering and System Safety, 2001, 74 : 323-335.
[7]谢里阳[1],王正[1].具有不确定性的恒幅循环载荷疲劳可靠度异量纲干涉分析方法[J].机械强度,2008,30(5):763-767.
[8]姚卫星著.结构疲劳寿命分析[M],2003:260.
[9]谢里阳,王正,周金宇,等.机械可靠性基本理论与方法[M].北京:科学出版社,2009.