Computational assessment of ratcheting in rail-wheel contact with solid contaminant
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Elsevier BV
Reference28 articles.
1. Windblown sand along railway infrastructures: a review of challenges and mitigation measures;Bruno;J. Wind Eng. Ind. Aerod.,2018
2. Effect of desert sand on wear and rolling contact fatigue behaviour of various railway wheel steels;Faccoli;Wear,2018
3. Study on the influence of sand erosion process on the wear and damage of heat-treated U75V rail steel;Shu;J. Tribol.,2021
4. Laboratory investigation of some sanding parameters to improve the adhesion in leaf-contaminated wheel—rail contacts;Arias-Cuevas;Proc. Inst. Mech. Eng. F J. Rail Rapid Transit,2010
5. A review of railway sanding system research: adhesion restoration and leaf layer removal;Skipper;Tribol. Mater. Surface Interfac.,2018
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1. An efficient 3D finite element procedure for simulating wheel–rail cyclic contact and ratcheting;Tribology International;2024-10
2. The evaluation of wear processes of the rolling-sliding contact by means of flake wear debris in dry and wet contact;Multiscale and Multidisciplinary Modeling, Experiments and Design;2024-09-13
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