A threshold fatigue crack closure model: Part I- model development
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[1] S. Purushothaman,et al. A fatigue crack growth mechanism for ductile materials , 1975 .
[2] R. Pippan. The condition for the cyclic plastic deformation of the crack tip: the influence of dislocation obstacles , 1992 .
[3] M. S. Hunter,et al. Natural and Thermally Formed Oxide Films on Aluminum , 1956 .
[4] H. Sehitoglu,et al. Contact of crack surfaces during fatigue: Part 2. Simulations , 1997 .
[5] K. Ravichandran. A theoretical model for roughness induced crack closure , 1990 .
[6] H. Sehitoglu,et al. Contact of crack surfaces during fatigue: Part 1. formulation of the model , 1997 .
[7] H. Exner,et al. A model for roughness-induced fatigue crack closure , 1998 .
[8] G Hua,et al. Growth of Fatigue Cracks Under Combined Mode I and Mode II Loads , 1985 .
[9] A. Wilkinson,et al. A dislocation model for the two critical stress intensities required for threshold fatigue crack propagation , 1996 .
[10] Kunigal N. Shivakumar,et al. An equivalent domain integral method in the two-dimensional analysis of mixed mode crack problems , 1990 .
[11] J. Ruppen,et al. THE EFFECT OF ENVIRONMENT ON CRACK CLOSURE AND FATIGUE THRESHOLD , 1983 .
[12] John Dundurs,et al. Interaction between an edge dislocation and a circular inclusion , 1964 .
[14] K. Komai,et al. Mechanical Effects of Corrosion Products in Corrosion Fatigue Crack Growth of a Steel , 1981 .
[15] D. S. Dugdale. Yielding of steel sheets containing slits , 1960 .
[16] S. Suresh,et al. Mechanisms of Slow Fatigue Crack Growth in High Strength Aluminum Alloys: Role of Microstructure and Environment , 1984 .
[17] J. Llorca,et al. ROUGHNESS-INDUCED FATIGUE CRACK CLOSURE: A NUMERICAL STUDY , 1992 .
[18] R. Piascik,et al. Stress Ratio Effects on Crack Opening Loads and Crack Growth Rates in Aluminum Alloy 2024 , 1998 .
[19] S. Suresh,et al. Oxide-Induced Crack Closure: An Explanation for Near-Threshold Corrosion Fatigue Crack Growth Behavior , 1981 .
[20] C. J. Beevers,et al. A FATIGUE CRACK CLOSURE MECHANISM IN TITANIUM , 1979 .
[21] Subra Suresh,et al. Some considerations on the modelling of oxide-induced fatigue crack closure using solutions for a rigid wedge inside a linear elastic crack , 1983 .
[22] Robert P. Wei,et al. Modelling of small fatigue crack growth interacting with grain boundary , 1986 .
[23] P. Liaw. Overview of Crack Closure at Near-Threshold Fatigue Crack Growth Levels , 1988 .
[24] R. Ritchie,et al. Fatigue of aluminium—lithium alloys , 1992 .
[25] J. Newman. A crack-closure model for predicting fatigue crack growth under aircraft spectrum loading , 1981 .
[26] H. W. Liu. A dislocation barrier model for fatigue limit – as determined by crack non-initiation and crack non-propagation , 1999 .
[27] John W. Hutchinson,et al. Analysis of Closure in Fatigue Crack Growth , 1978 .
[28] Y. Z. Chen,et al. Stress intensity factors for curved and kinked cracks in plane extension , 1999 .
[29] J. D. Eshelby,et al. XLI. The equilibrium of linear arrays of dislocations. , 1951 .
[30] A. Cottrell,et al. The spread of plastic yield from a notch , 1963, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[31] K. Ravichandran. Further results on “A theoretical model for roughness induced crack closure”; Effect of yield strength and grain size , 1990 .
[32] E. Wolf. Fatigue crack closure under cyclic tension , 1970 .
[33] F. Erdogan,et al. On the Crack Extension in Plates Under Plane Loading and Transverse Shear , 1963 .
[34] Subra Suresh,et al. Some considerations on fatigue crack closure at near-threshold stress intensities due to fracture surface morphology , 1982 .
[35] N.J.I. Adams,et al. Fatigue crack closure at positive stresses , 1972 .