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Article Dans Une Revue Industrial Lubrication and Tribology Année : 2020

Modelling and analysis of slip conditions in hydrodynamic lubrication of a piston skirt-cylinder contact

Mustapha Mechalikh
  • Fonction : Auteur
Ibrahim Zidane
  • Fonction : Auteur
Abdessoufi Benhamou
  • Fonction : Auteur
Miloud Tahar Abbes
  • Fonction : Auteur

Résumé

Purpose After more than a century of agreement with the postulate of non-slip condition (adhesion to the wall), the study of fluid-solid boundary conditions has shown renewed interest over the past two decades. Although numerous studies have not yet been arrived to a complete description of slip phenomena, however, it appears that the influence of wetting and/or surface roughness results in a weak interaction between fluid and solid; thus, the presence of the slip phenomenon is observed at the fluid-solid interface. The purpose of this paper is to highlight the presence of the slip phenomenon at the lubricated piston skirt-cylinder contact. Design/methodology/approach For this proposal, a modified Reynolds equation and operating characteristics are determined by taking into account the slip conditions at the interface between oil-film and entire cylinder surface. Findings The findings indicate that the operating characteristics are strongly influenced when the slip conditions are taken into account at the interface between oil-film and cylinder surface. The friction force and dissipated power might be reduced to improve diesel engine performances. Originality/value Various research studies have been conducted to model the slip phenomenon in different lubricated contacts over the past two decades. However, there are no studies available concerning the piston-cylinder system. Peer review The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-11-2019-0483/
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Dates et versions

hal-03612801 , version 1 (18-03-2022)

Identifiants

Citer

Mustapha Mechalikh, Ibrahim Zidane, Abdessoufi Benhamou, Hamid Zaidi, Miloud Tahar Abbes. Modelling and analysis of slip conditions in hydrodynamic lubrication of a piston skirt-cylinder contact. Industrial Lubrication and Tribology, 2020, 72 (10), pp.1181-1187. ⟨10.1108/ILT-11-2019-0483⟩. ⟨hal-03612801⟩
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