Page 319 - Кулик В.В.
P. 319
319
fracture behavior of forged and cast railway wheels. Fatigue and fracture of
Engineering Materials and Structures. 2001. P. 66–72.
125. Fuoco R., Ferreira M.M., Azevedo C.R.F. Failure analysis of a cast
steel railway wheel. Engineering failure analysis. 2004. Vol. 11. P. 817–828.
126. Liu Z.X., Gu H.C. Failure modes and materials performance of
railway wheels // Journal of Materials Engineering and Performance. 2000. Vol.
9. P. 580–584.
127. Pearce T.G., Sherratt N.D. Prediction of wheel profile wear. Wear.
1991. Vol. 144. P. 343–351.
128. Zobory I. Prediction of wheel/rail profile wear. Vehicle System
Dynamics. 1997. Vol. 28. P. 221–259.
129. Jendel T., Berg M. Prediction of wheel profile wear. Vehicle Systems
Dynamics Supplement. 2002. Vol. 37. P. 502–513.
130. Braghin F., Bruni S., Resta F. Wear of railway wheel profiles: a
comparison between experimental results and a mathematical model. Vehicle
Systems Dynamics Supplement. 2002. Vol. 37. P. 478–489.
131. Kalker J.J. Three-Dimensional Elastic Bodies in Rolling Contact.
Dordrecht: Kluwer Academic Publisher, 1990.
132. Kik W., Piotrowsky J. A fast, approximate method to calculate normal
load at contact between wheel and rail and creep forces during rolling. Proceedings
of the 2nd Mini Conference on Contact Mechanics and Wear of Rail/Wheel
Systems. (29-31 July 1996, Budapest). 1996.
133. Dearden J. The wear of steel rails and tyres in railway service. Wear.
1960. Vol. 3. P. 43–49.
134. Steele R.K. Observations of in-service wear of railroad wheels and
rails under conditions of widely varying lubrication. ASLE Transactions. 1982.
Vol. 25. P. 400–409.
135. McEwen I.J., Harvey R.F. Full-scale wheel-on-rail testing:
comparisons with service wear and a developing theoretical predictive model.
Lubrication Engineers. 1985. Vol. 41. P. 80–88.