共 14 条
[1]
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[2]
Ritchie R.O., pp. 195-204, (1977)
[3]
Hoeppener D.W., Krupp W.E., Prediction of Component Life by Application of Fatigue Crack Growth Knowledge, Engineering Fracture Mechanics, 6, pp. 47-70, (1974)
[4]
Forman R.G., Study of Fatigue Crack Initiation from Flaws Using Fracture Mechanics Theory, Engng Fract. Mech., 4, pp. 333-345, (1972)
[5]
Nicholson C.E., Influence of Mean Stress and Environment on Crack Growth, Conf. Proc. “Mechanics and Mechanisms of Crack Growth”, pp. 226-243, (1973)
[6]
Klesnil M., Lukas P., Effect of Stress Cycle Asymmetry on Fatigue Crack Growth, Mater. Sci. Engng, 9, pp. 231-240, (1972)
[7]
Obianyor D.F., Miller K.J., The Effect of Stress History on Fatigue Crack Retardation Behaviour, J. Strain Anal., 13, 1, pp. 52-58, (1978)
[8]
Masounave J., Bailon J.P., The Dependence of the Threshold Stress Intensity on the Cyclic Stress Ratio in Fatigue of Ferritic‐Pearlite Steels, Scripta Metallurgica, 9, pp. 723-730, (1975)
[9]
McEvily A.J., ‘Current Aspects of Fracture’, Conf. Proc. “Fatigue '77”, pp. 1-9, (1977)
[10]
Wei R.P., McEvily A.J., Fracture Mechanics and Corrosion Fatigue, pp. 381-395, (1971)