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Performance of hydrodynamic textured journal bearing with the combined influence of elastic deformation and pseudo-plastic lubricant

Article dans une revue avec comité de lecture
Auteur
MANSER, Belkacem
302807 Université M'Hamed Bougara Boumerdes [UMBB]
ccKHELLADI, Sofiane
1003528 Laboratoire d'Ingénierie des Fluides et des Systèmes Énergétiques [LIFSE]
DELIGANT, Michael
1003528 Laboratoire d'Ingénierie des Fluides et des Systèmes Énergétiques [LIFSE]
ccRAGUEB, Haroun
BELAIDI, Idir
302807 Université M'Hamed Bougara Boumerdes [UMBB]
BAKIR, Farid
1003528 Laboratoire d'Ingénierie des Fluides et des Systèmes Énergétiques [LIFSE]

URI
http://hdl.handle.net/10985/26143
DOI
10.1177/13506501231179526
Date
2023-06-06
Journal
Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology

Résumé

This study outlines the performances of finite-length journal bearing with textured liner, shear-thinning Rabinowitsch lubricants, and considers the elastic deformation of the bearing liner. The yielded nonlinear Rabinowitsch-Reynolds PDE system has been solved using the finite difference method combined with Elrod’s algorithm for the case of cylindrical textures. The static performance of hydrodynamic lubrication, in this case, involves different parameters such as depth of texture, eccentricity ratio, elastic deformation factor, rheological index, etc. Results showed that, at a fixed eccentricity ratio, texturing of the bearing’s converging area enhances significantly the load-carrying capacity and reduces the friction coefficient compared to the smooth bearing surface (up to 22% in load capacity and 17% in friction coefficient). On the other hand, using a lubricant with more pronounced shear-thinning behavior and/or elastic liner reduces the journal bearing performances (up to 25% in load capacity and 30% in pressure). By applying the optimization technique (particle swarm optimization), an optimal arrangement of textures that can compensate for these losses in performance even at high eccentricity has been found. This optimal texture with dimensionless dimple’s depth set to 1 (ry=40 µm) improves the load capacity with 10% for a lubricant with a rheological index α= 0.6 and elastic bearing liner with deformation parameter C0=0.05.

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  • Laboratoire Ingénierie des fluides Systèmes énergétiques (LIFSE)

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