Accurately estimating the coefficient of friction (CoF) is essential in modelling railroad dynamics, reducing maintenance costs, and increasing safety in rail operations. The typical assumption of a constant CoF is widely used in theoretical studies; however, it has been noticed that the CoF is not constant, but rather depends on various dynamic parameters and instantaneous conditions. In this paper, we present a newly developed three-dimensional nonlinear CoF model for the dry rail condition and test the CoF variation using this model with estimated dynamic parameters. The wheel–rail is modelled as a mass–spring–damper system to simulate the basic wheel–rail dynamics. Although relatively simple, this model is considered sufficient for the purpose of this study. Simulations are performed at a train speed of 20 m/s using rail roughness as an excitation source. The model captures the CoF extremes and illustrates its nonlinear behaviour and instantaneous dependence on several structural and dynamic parameters.


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    Title :

    Dynamic model for the wheel–rail contact friction


    Contributors:

    Published in:

    Vehicle System Dynamics ; 50 , 2 ; 299-321


    Publication date :

    2012-02-01


    Size :

    23 pages




    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    English




    Dynamic model for the wheel-rail contact friction

    Lee,H.W. / Sandu,C. / Holton,C. et al. | Automotive engineering | 2012


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    Wheel-Rail Dynamic Model and Stochastic Analysis of the Friction in the Contact Patch

    Lee, H. / Sandu, C. / Holton, C. et al. | British Library Conference Proceedings | 2010


    Multiscale simulation of dry friction in wheel/rail contact

    Bucher, F. / Dmitriev, A.I. / Ertz, M. et al. | Tema Archive | 2006


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    Bouteloup, M. | Engineering Index Backfile | 1949