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REFERENCES BIBLIOGRAPHIQUES [1] : Miner M. A., Cumulative damage in fatigue. Journal of Applied Mechanics, 1945, 67, A159-A164. [2] : Kujawski D. et Ellyin F., A cumulative damage theory of fatigue crack initiation and propagation. Intern. Journal of Fatigue, 1984, 6 (2), 83-88. [3] : Golos K.et Ellyin G. F Generalization of cumulative damage criteron to multilevel cyclic loading. Theorical and Applied Fracture Mechanics, 1987, 7, 169-176. [4] : Golos K. et Ellyin F., A total strain energy density theory for cumulative fatigue damage. ASME Journal of Pressure Vessel Technology, 1988, 110, 36-41. [5] : Ellyin F. et Kujawski D., Plastic strain energy in fatigue failure. ASME Journal of Pressure Vessel Technology, 1984, 106, 342-347. [6] : Lefevre D. et Ellyin F., Cyclic response and inelastic strain energy in low fatigue. Intern. Journal of Fatigue, 1984, 6 (1), 9-15. [7] : Ellyin F. Fatigue life prediction under multiaxial stress condition. Development in eng. Mecha. , A.P.S Selvadurai. Commemorative centrennial vol. , Elsevier, UK, 1987, 133-158. [8] : French H. J., Fatigue and hardening of steels. Trans. American Society of Steel Testing, 1933, 21, 899-946. [9] : Grover H.J., An observation concerning the cycle ratio in cumulative damage. In Symposium on Fatigue of Aircraft Structures, ASTM STP 274. American Society for Testing and Materials, Philadelphia, PA, 1960, 120-124. [10] : Manson S. S., Freche J. C. et Ensign S. R ...
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