Influence of railway wheel tread damage on wheel–rail impact loads and the durability of wheelsets
Journal article, 2023

Dynamic wheel–rail contact forces induced by a severe form of wheel tread damage have been measured by a wheel impact load detector during full-scale field tests at different vehicle speeds. Based on laser scanning, the measured three-dimensional damage geometry is employed in simulations of dynamic vehicle–track interaction to calibrate and verify a simulation model. The relation between the magnitude of the impact load and various operational parameters, such as vehicle speed, lateral position of wheel–rail contact, track stiffness and position of impact within a sleeper bay, is investigated. The calibrated model is later employed in simulations featuring other forms of tread damage; their effects on impact load and subsequent fatigue impact on bearings, wheel webs and subsurface initiated rolling contact fatigue of the wheel tread are assessed. The results quantify the effects of wheel tread defects and are valuable in a shift towards condition-based maintenance of running gear, and for general assessment of the severity of different types of railway wheel tread damage.

dynamic vehicle-track interaction

wheelset durability

wheel-rail impact load

field measurements

wheel tread damage

rolling contact fatigue cluster

Author

Michele Maglio

Chalmers, Mechanics and Maritime Sciences (M2), Dynamics

Tore V Vernersson

Chalmers, Mechanics and Maritime Sciences (M2), Dynamics

Jens Nielsen

Chalmers, Mechanics and Maritime Sciences (M2), Dynamics

Anders Ekberg

Chalmers, Mechanics and Maritime Sciences (M2), Dynamics

Elena Kabo

Chalmers, Mechanics and Maritime Sciences (M2), Dynamics

Railway Engineering Science

2662-4745 (ISSN) 2662-4753 (eISSN)

Vol. In Press

Driving research and innovation to push Europe's rail system forward (IN2TRACK3)

Swedish Transport Administration (2021/19114), 2021-01-01 -- 2023-12-31.

European Commission (EC) (EC/H2020/101012456), 2021-01-01 -- 2023-12-31.

Areas of Advance

Transport

Subject Categories

Applied Mechanics

Vehicle Engineering

DOI

10.1007/s40534-023-00316-2

More information

Latest update

12/12/2023