An Original Methodology to Model Stationary and Transient Starvation in Elastohydrodynamic Lubrication Contact

Author:

Decote M.1,Fillot N.1,Mahéo Y.2,Morales-Espejel G. E.34

Affiliation:

1. LaMCoS, UMR5259 Univ Lyon, INSA Lyon, CNRS, , 69621 Villeurbanne , France

2. SKF Aerospace , F-26300 Châteauneuf-sur-Isère , France

3. LaMCoS, UMR5259 Univ Lyon, INSA Lyon, CNRS, , 69621 Villeurbanne , France ;

4. SKF Research & Technology Development , Meidoornkade 14, 3922AE Houten , The Netherlands

Abstract

Abstract Despite many researches in the past decades, starvation modeling of an elastohydrodynamic lubricated (EHL) contact is still an arduous task. The well-established Jackobson, Floberg, and Olsson (JFO) theory indeed shows jump discontinuities that are tricky to consider in a numerical solver. Two strategies are discussed in this article. The first one uses a penalty method, while the second one uses a moving mesh method. Their efficiency are compared to reference cases coming from the literature. Then, they are submitted to a transient analysis where the oil inlet layer decreases suddenly.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference24 articles.

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3. A Computer Program for Cavitation and Starvation Problems;Elrod,1974

4. Variational Formulations and Finite Element Algorithms for Cavitation Problems;Bayada;ASME J. Tribol.,1990

5. Efficient Solver Implementation for Reynolds Equation With Mass-Conserving Cavitation;Biboulet;Tribol. Int.,2018

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