240
Z. Wang et al.
36. Wang, F., Men, X., Liu, Y., Fu, X.: Experiment and simulation study on influence of ultrasonic
rolling parameters on residual stress of Ti-6Al-4 V alloy. Simul. Model. Pract. Theory 104,
102121 (2020)
37. Wang, H., Song, G., Tang, G.: Evolution of surface mechanical properties and microstructure
of Ti 6Al 4V alloy induced by electropulsing-assisted ultrasonic surface rolling process. J.
Alloy. Compd. 681, 146–156 (2016)
38. Garnham, J.E., Davis, C.L.: Very early stage rolling contact fatigue crack growth in pearlitic
rail steels. Wear 271(1–2), 100–112 (2011)
39. Ooki, C.: Improving Rolling Contact Fatigue Life of Bearing Steels through Grain Refinement.
SAE Technical Papers (1), (2004)
40. Baughman, R.A.: Effect of hardness, surface finish and grain size on rolling contact fatigue
life of M50 bearing steel. J. Basic Eng. 82(2), 287–294 (1960)
41. Zhang, J., Wu, H., Wang, Y., Zhou, J.: Study on crack growth and fatigue life in TC6 titanium
alloy by integrated phase proportion and grain size modeling. Eng. Fract. Mech. 237, 107235
(2020)
42. Cruse, T.A., Meyers, G.J., Wilson, R.B.: Fatigue growth of surface cracks. Astm Special
Technical Publication (1977)
43. Chen, S., Cui, Z.: Surface crack growth behaviour under tensile cyclic loading. J. Int. J. Fatigue
10(1), 43–47 (1988)
Précédent

- 242/290

Suivant