]. T. Conno03, P. A. Connolley, J. M. Reed, and . Starink, Short crack initiation and growth at 600°c in notched specimens of Inconel 718, Materials Science and Engineering A, vol.340, pp.1-2, 2003.

]. J. Hyzak82a, I. M. Hyzak, and . Bernstein, The effect of defects on the fatigue crack initiation process in two p/m superalloys: part i. fatigue origins, Metallurgical Transactions A, vol.34, issue.1, pp.33-43, 1982.
DOI : 10.1007/BF02642413

]. R. Molins97b, J. C. Molins, E. Chassaigne, and . Andrieu, Nickel based alloy intergranular embrittlement in relation with oxidation mechanisms, Materials Science Forum, pp.251-254, 1997.

]. S. Pon01 and . Ponnelle, Propagation des fissures par fatigue à haute température dans l'Inconel 718 : effet de microstructures et de chargements complexes, 2001.

R. Du and M. , 161 7.2.1. Paramètres du modèle, p.163

R. Du and M. , 161 7.2.1. Paramètres du modèle, p.163

]. A. Brück93, H. Brückner-foit, and U. Jäckels, Prediction of the lifetime distribution of high-strength components subjected to fatigue loading, Fatigue and fracture of engineering materials and structures, pp.8-891, 1993.

]. C. Cay95 and . Cayron, Influence des carbures primaires sur la tenue en fatigue des disques en Inco718, 1995.

]. I. Chant00, . Chantier-de, and . Lima, Tolérance aux défauts initiaux et effets de surface : dimensionnement à la fatigue de pièces de fonderie, Thèse de doctorat, 2000.

]. R. Deho68, F. N. Dehoff, and . Rhines, Quantitative Microscopy, Materials Science and Engineering Series, 1968.

]. B. Fed98 and . Fedelich, A stochastic theory for the problem of multiple surface crack coalescence, International Journal of Fracture, vol.91, pp.23-45, 1998.

]. J. Hyzak82a, I. M. Hyzak, and . Bernstein, The effect of defects on the fatigue crack initiation process in two p/m superalloys: part i. fatigue origins, Metallurgical Transactions A, vol.34, issue.1, pp.33-43, 1982.
DOI : 10.1007/BF02642413

]. A. Lefran86, P. Lefrançois, A. Clement, and . Pineau, The growth of short fatigue cracks in an aluminium alloy in relation to crack closure effect, International Conference on Fatigue of Engineering Materials and Structures, pp.59-65, 1986.

]. C. Shamb85, D. R. Shamblen, and . Chang, Effect of inclusions on LCF life of HIP plus heat treated powder metal Rene 95, Metallurgical Transactions B, vol.16, pp.775-784, 1985.

]. K. Tana82, T. Tanaka, and . Mura, A Theory of fatigue crack initiation at inclusions, Metallurgical Transactions A, vol.13, pp.117-123, 1982.

]. V. Zerr00 and . Zerrouki, Inconel 718 et tenue en fatigue oligocyclique Influence de la microstructure et prédiction de la durée de vie, 2000.

]. R. Form67, V. E. Forman, R. M. Kearney, and . Engle, Numerical Analysis of Crack Propagation in a Cyclic-Loaded Structure, Journal of Basic Engineering, vol.89, issue.3, pp.459-464, 1967.

J. R. Haigh and R. P. Skelton, A strain intensity approach to high temperature fatigue crack growth and failure, Materials Science and Engineering, vol.36, issue.1, pp.133-137, 1978.
DOI : 10.1016/0025-5416(78)90203-3

]. R. Hill50 and . Hill, The mathematical theory of plasticity, 1950.

]. G. Irwin57 and . Irwin, Analysis of Stresses and Strains near the End of a Crack Traversing a Plate, Trans. ASME, Journal of Applied Mechanics, vol.24, pp.361-364, 1957.

]. H. Neub61 and . Neuber, Theory of stress concentration of shear-strained prismatical bodies with arbitrary nonlinéar stress-strain low, Trans. ASME, Journal of Applied Mechanics, vol.28, pp.544-550, 1961.

J. C. Newman-jr and S. R. Raju, An empirical stress-intensity factor equation for the surface crack, Engineering Fracture Mechanics, vol.15, issue.1-2, pp.185-192, 1981.
DOI : 10.1016/0013-7944(81)90116-8

]. S. Pon01 and . Ponnelle, Propagation des fissures par fatigue à haute température dans l'Inconel 718 : effet de microstructures et de chargements complexes, 2001.

]. F. San00 and . Sansoz, Propagation des petites fissures de fatigue dans les zones de concentration de contraintes dans le superalliage N18, Thèse de doctorat, 2000.

]. K. Walk70 and . Walker, The Effect of Stress Ratio During Crack Propagation and Fatigue for 2024- T3 and 7075-T6 Aluminum, ASTM STP 462, Philadelphia), p.1, 1970.