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Elastoplastic contact of rough surfaces: a line contact model for boundary regime of lubrication
Authors:W W F Chong  M De la Cruz
Institution:1. Faculty of Engineering and the Environment, University of Southampton Malaysia Campus (USMC), Nusajaya, Johor, Malaysia
2. National Centre of Advanced Tribology (nCATS), Faculty of Engineering and the Environment, University of Southampton, Southampton, UK
3. Wolfson School of Mechanical & Manufacturing Engineering, Loughborough University, Loughborough, UK
Abstract:This paper introduces an improved friction model accounting for elastoplastic behavior of interacting asperities along contiguous rough surfaces for a line contact solution. It is based on Greenwood and Tripp’s original boundary friction model and specifically tailored for a boundary regime of lubrication. The numerical solution of Reynolds’ equation is achieved by implementing Elrod’s cavitation algorithm for a one dimensional line contact. The transience in the numerical solution is retained by accounting for the squeeze film term in Reynolds’ equation under fixed loading conditions and varying sliding motion. A sliding bearing rig is used to measure friction and compare the results with the prediction made using the approach highlighted above. The numerical/experimental results show good agreement.
Keywords:
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