尚德广, 王大康, 李明. 基于临界面法的缺口件多轴疲劳寿命预测[J]. 机械强度, 2003, 25(2): 212-214. Shang Deguang, Wang Dakang, Li Ming. Multiaxial fatigue life prediction for notched specimens based on the critical plane approach [J]. Journal of Mechanical Strength, 2003, 25(2): 212-214. (in Chinese)
[2]
李静, 孙强, 李春旺, 张忠平, 乔艳江. 多轴载荷下缺口试件疲劳寿命预测研究[J]. 固体力学学报, 2011, 32(1): 37-42. Li Jing, Sun Qiang, Li Chunwang, Zhang Zhongping, Qiao Yanjiang. Fatigue life prediction for notched specimen under multiaxial loading [J]. Chinese Journal of Solid Mechanics, 2011, 32(1): 37-42. (in Chinese)
[3]
刘灵灵, 张婷, 孔艳平, 王令刚. 高温多轴非比例加载下缺口试样的疲劳寿命预测[J]. 工程力学, 2009, 26(8): 184-188. Liu Lingling, Zhang Ting, Kong Yanping, Wang Linggang. Fatigue life prediction for notched specimens under multiaxial non-proportional loading at high temperature [J]. Engineering Mechanics, 2009, 26(8): 184-188. (in Chinese)
[4]
邱宝象, 高增梁, 王效贵, 冯淼林. 基于有限元法的16MnR缺口件疲劳寿命预测方法[J]. 工程力学, 2010, 27(8): 21-26. Qiu Baoxiang, Gao Zengliang, Wang Xiaogui, Feng Miaolin. A fatigue life prediction method for 16MnR steel notched components based on the finite element method [J]. Engineering Mechanics, 2010, 27(8): 21-26. (in Chinese)
[5]
Socie D F, Waill L E, Dittmer J L. Biaxial fatigue of inconel 718 including mean stress effects [C]. Multiaxial Fatigue, ASTM STP 853, Biaxial/Multiaxial Fatigue, December 15-17, 1982, San Francisco, California. Pliiladelphia: American Society for Testing and Materials, 1985: 463-481.
[6]
Pascoe K J, Devilliers J W R. Low cycle fatigue of steel under biaxial straining [J]. Journal of Strain Analysis for Engineering Disign, 1967, 2(2): 117-126.
[7]
Socie D F, Marquis G B. Multiaxial fatigue [M]. Warrendale, Pa: Society of Automotive Engineers, 2000: 182-183.
[8]
Krempl E. The influence of state of stress on low-cycle fatigue of structural materials [R]. Philadelphia, Pa: American Society for Testing and Materials, ASTM STP 549, 1974.
[9]
Shamsaei N, Gladskyi M, Panasovski K, et al. Multiaxial fatigue of titanium including step loading and load path alteration and sequence effects [J]. International Journal of Fatigue, 2010, 32(11): 1862-1874.
[10]
Fatemi A, Socie D F. A critical plane approach to multiaxial fatigue damage including out-of-phase loading [J]. Fatigue and Fracture of Engineering Materials and Structures, 1988, 11(3): 149-166.
[11]
Kandile F A, Brown M W, Miller K J. Biaxial low cycle fatigue fracture of 316 stainless steel at elevated temperatures [M]. vol. 280. London: The Metal Society, 1982: 203-210.
[12]
吴志荣, 胡绪腾, 宋迎东. 基于最大剪应变幅和修正SWT参数的多轴疲劳寿命预测模型[J]. 机械工程学报, 2013, 49(2): 59-66. Wu Zhirong, Hu Xuteng, Song Yingdong. Multi-axial fatigue life prediction model based on maximum shear strain amplitude and modified SWT parameter [J]. Chinese Journal of Mechanical Engineering, 2013, 49(2): 59-66. (in Chinese)
[13]
姚卫星. 结构疲劳寿命分析[M]. 北京: 国防工业出版社, 2003: 119-120. Yao Weixing. Fatigue life prediction of structures[M]. Beijing: National Defense Industry Press, 2003: 119-120. (in Chinese)
[14]
Kurath P, Downing S D, Galliart D R. Summary of non-hardened notch shaft round robin program[C]. Multiaxial Fatigue Analysis and Experiments,edited by Leese GE and Socie DF, Warrendale, SAE AE-14, Society of Automotive Engineers, 1989: 13-32.
[15]
辛朋朋, 胡绪腾, 宋迎东. 基于临界距离理论的TC4合金缺口试样低循环疲劳寿命预测[J]. 航空动力学报, 2012, 27(5): 1105-1112. Xin Pengpeng, Hu Xuteng, Song Yingdong. LCF life prediction for TC4 alloy notched specimens based on theory of critical distance [J]. Journal of Aerospace Power, 2012, 27(5): 1105-1112. (in Chinese)
[16]
Kanazawa K, Miller K J, Brown M. Low cycle fatigue under out-of-phase loading conditions [J]. Journal of Engineering Materials and Technology, 1977, 99(3): 222-228.
[17]
Taira S, Inoue T, Yoshida T. Low cycle fatigue under multiaxial stresses (in the case of combined cyclic tension-compression and cyclic torsion) at room temperature [C]. The Society of Materials Science Proceedings of 12th Japan Congress on Material Research, Kyoto, Japan, 1969: 50-55.
[18]
Brown M W, Miller K J. High temperature low cycle biaxial fatigue of two steels [J]. Fatigue and Fracture of Engineering Materials and Structures, 1979, 1(2): 217-229.