[1] HOSSEINI A, MAHMOUD M A. Evaluation of stress intensity factor and fatigue growth of surface cracks in tension plates[J]. Eng Fract Mech, 1985, 22:957-974.
[2]
[2] MAHMOUD M A, HOSSEINI A. Assessment of stress intensity factor and aspect ratio variability of surface cracks in bending plates[J]. Eng Fract Mech, 1986, 24:207-221.
[3]
[3] NEWMAN J C, RAJU I S. An empirical stress intensity factor equation for the surface crack[J]. Eng Fract Mech, 1981, 15:185-192.
[4]
[4] SMITH R A, COOPER J F. A finite element model for the shape development of irregular planar cracks[J]. Int J Pres Ves Piping, 1989, 36:315-326.
[5]
[5] LIN X B, SMITH R A. Finite element modeling of fatigue crack growth of surface cracked plates[J]. Eng Fract Mech, 1999, 63:523-540.
WU Zhixue. Prediction of aspect ratio variation of surface cracks under fatigue loading[J]. Chinese Journal of Applied Mechanics, 2010, 27(4):783-786.(in Chinese)
[8]
[7] WU S X. Shape change of surface during fatigue growth[J]. Eng Fract Mech, 1985, 22:897-913.
LI Liang-bi, LUO Guang-en, WANG Zi-li. Study on damage tolerance of submarine conecylinder pressure shell structure[J]. Journal of Ship Mechanics, 2006,10(1):92-97.(in Chinese)
[11]
[9] FUCHS H O, STEPHENS R I. Metal fatigue in engineering[M]. New York: John Wiley & Sons, 1980.
[12]
[10] 杨秉宪.微小裂纹的发生与扩展[J].北京航空学院学报,1984(2):67-75.
[13]
YANG Bing-xian. Initiation and growth of small cracks[J].Journal of Beijing University of Aeronautics and Astronautics,1984(2):67-75.(in Chinese)