XFEM rolling contact fatigue crack propagation in railways considering creepages on contact shear stresses

In this work the influence of considering wheel-rail contact creepages on fatigue crack growth rates due to Rolling Contact Fatigue (RCF) is studied. For this purpose, the FASTSIM algorithm, which considers the moving complex pressure distribution with slipping and adhesion zones of the wheel-rail c...

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Detalles Bibliográficos
Autores: Rodríguez-de-Arana, B. (Borja)|||/items/6a91c683-1532-4b90-94b9-0fd660b46d32, Bergara, A. (Asier)|||/items/7e1990fc-72f4-482a-899b-76d83680d642, Gil-Negrete, N. (Nere)|||/items/ab8a7397-1b2a-4659-9fed-73cf99e6bbfb, Nieto-Fernández, F.J.(Francisco Javier)|||/items/fce8a7a5-073d-4026-bc2e-360b74a8107e
Tipo de recurso: artículo
Fecha de publicación:2022
País:España
Institución:Universidad de Navarra
Repositorio:Dadun. Depósito Académico Digital de la Universidad de Navarra
Idioma:inglés
OAI Identifier:oai:dadun.unav.edu:10171/65567
Acceso en línea:https://hdl.handle.net/10171/65567
Access Level:acceso abierto
Palabra clave:Área Ingeniería Mecánica, Naval y Aeronáutica
XFEM
Rolling contact fatigue
Wheel
Rail contact shear stresses
Creepages
Railway
Descripción
Sumario:In this work the influence of considering wheel-rail contact creepages on fatigue crack growth rates due to Rolling Contact Fatigue (RCF) is studied. For this purpose, the FASTSIM algorithm, which considers the moving complex pressure distribution with slipping and adhesion zones of the wheel-rail contact patch, has been implemented in Abaqus using FORTRAN code subroutines. The developed methodology has been validated with a 60E1 rail profile model which uses XFEM, by comparing the obtained Stress Intensity Factors (SIFs) and sub-surface shear stresses with numerical results available in the literature. Finally, the RCF crack propagation analysis of a 60E1 rail profile with different contact conditions has been performed using the XFEM. The obtained results justify the necessity of considering contact creepages on contact shear stresses for crack growth analysis.