Wheel-rail contact wear analysis on curved lubricated track for heavy haul locomotive studies

Author:

Sun Yan Quan1ORCID,Spiryagin Maksym1ORCID,Wu Qing1ORCID,Cole Colin1ORCID

Affiliation:

1. Centre for Railway Engineering, Central Queensland University, Rockhampton, QLD, Australia

Abstract

The effect of lubrications on a curved track to heavy-haul wheel-rail contact wear is studied. To analyse wheel-rail contact wear damage due to existing high-adhesive AC locomotive, a methodology for investigation is proposed, and the locomotive models are required to run at 20 km/h under maximum traction efforts, and the simulations include a DC locomotive for comparison. An extended creep force model, which was developed by Polach and has been widely used for the wheel-rail contacts under dry and wet conditions with variable friction coefficients, is further extended to apply for the typical low-coefficient-friction modifier, oil, and grease lubricant conditions. The wear models from two pairs of wheel-rail materials are used to predict the wear rates, and the wear numbers Tγ are presented for discussions. The simulations show that the lubricants significantly reduce the wheel-rail contact wear.

Publisher

SAGE Publications

Reference35 articles.

1. Reddy V, Chattopadhyay G, Hargreaves D, et al. Techniques in developing economic decision model combining above rail and below rail assets. In: WCEAM, Gold Coast, QLD, Australia, 2006.

2. The effects of friction management materials on rail with pre existing rcf surface damage

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