Page 324 - Кулик В.В.
P. 324
324
178. Sheppard S.D., Barber J.R. Comninou M. Subsurface cracks under
conditions of slip, stick, and separation caused by a moving compressive load.
Journal of Applied Mechanics. 1987. Vol. 54, No 2. P. 393–398.
179. Kaneta M., Murakami К. Effects of oil hydraulic pressure on surface
crack growth in rolling/sliding contact. Tribology International. 1987. Vol. 20,
No 4. P. 210–217.
180. Bower A.F. The influence of crack face friction and trapped fluid on
surface initiated rolling contact fatigue cracks. Journal of Tribology. 1988. Vol.
110, No 4. P. 704–711.
181. Glodež S., Flasker J., Ren Z. A new method for the numerical
determination of pitting resistance of gear teeth flanks. Fatigue and Fracture of
Engineering Materials and Structures. 1997. Vol. 20, No 1. P. 71–83.
182. Murakami Y., Sakae C., Hamada S. Mechanism of rolling contact
fatigue and measurement of K for steels. Engineering against fatigue. Ed.
IIth
Beynon J.H., Brown M.W., T.C. Lindley et al. Rotterdam: A. A. Balkema Publ.,
1999. P. 473-485.
183. Kudish I.I., Burris K.W. Modelling of surface and subsurface crack
behaviour under contact load and the presence of lubricant. International Journal
of Fracture. 2004. Vol. 125. P. 125–147.
184. Bogdanski S., Lewicki P., Szymaniak M. Experimental and theoretical
investigation of the phenomenon of filling the RCF crack with liquid. Wear. 2005.
Vol. 258. Р. 1280–1287.
185. Zafošnik B., Ren Z., Flašker J., Mishuris G. Modelling of surface
crack growth under lubricated rolling–sliding contact loading. International
Journal of Fracture. 2005. Vol. 134, No 2. P. 127–149.
186. Zerbst U., Madler K., Hintze H. Fracture mechanics in railway
applications - an overview. Engineering Fracture Mechanics. 2005. Vol. 72. Р.
163–194.
187. Panasyuk V.V., Datsyshyn O.P., Marchenko H.P. To crack
propagation theory under rolling contact. Engineering Fracture Mechanics. 1995.