Numerical simulation and experimental comparison of flaw evolution on a bearing raceway: Case of thrust ball bearing
Author(s) -
Moncef Toumi,
Sébastien Murer,
Fabien Bogard,
Fabrice Bolaers
Publication year - 2018
Publication title -
journal of computational design and engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.764
H-Index - 24
eISSN - 2288-5048
pISSN - 2288-4300
DOI - 10.1016/j.jcde.2018.01.004
Subject(s) - raceway , spall , ball (mathematics) , finite element method , ball bearing , structural engineering , thrust , bearing (navigation) , engineering , thrust bearing , mechanical engineering , computer science , lubrication , mathematics , geometry , artificial intelligence
Bearings are essential elements in the design of rotating machines. In an industrial context, bearing failure can have costly consequences. This paper presents a study of the rolling contact fatigue damage applied to thrust ball bearings. It consists in building a dynamic three-dimensional numerical model of the cyclic shift of a ball on an indented rolling surface, using finite element analysis (FEA). Assessment of the evolution in size of a surface spall as a function of loading cycles is also performed using FEM coupled with fatigue laws. Results are in good agreement with laboratory tests carried out under the same conditions using a fatigue test cell dedicated to ball bearings. This study may improve knowledge about estimating the lifetime of rolling components after onset of a spall using FEA and accounting for structural damage state.
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