Author:
Zhao Yuanfang,Jianxi Yang
Abstract
Purpose
The purpose of this paper is to explore the sensitive parameters affecting the friction resistance of sliding bearings under different interface slip conditions and the influence of the texture position of circular pits on the friction force of sliding bearings.
Design/methodology/approach
Based on the mechanical equilibrium equation and Newton's viscous fluid mechanics formula and wedge oil film model, the calculation model of sliding bearing friction resistance under interface slip state is established, and the influence of interface slip on friction resistance under different slip conditions is analyzed by means of ANSYS. Friction simulation model of circular pit textured journal bearing under different interface slip conditions.
Findings
The friction resistance of bearings is mainly determined by journal linear velocity, oil film slip ratio, pressure of inlet and outlet of bearings, oil film thickness and bearing capacity. When both the upper and lower surfaces of the oil film slip, the friction resistance decreases significantly, which is only 4-17 per cent of that without slip. And the friction force of the texture model of circular pit at the exit is better than that at the entrance and the middle of the pit.
Originality/value
Relevant research results will lay a new theoretical foundation for friction reduction and optimization design of sliding bearings.
Subject
Surfaces, Coatings and Films,General Energy,Mechanical Engineering
Reference18 articles.
1. Investigation into shear flow in micro/nano gap based on complicated boundary slip;Journal of South China University of Technology (Natural Science Edition),2014
2. Dipole-dependent slip of Newtonian liquids at smooth solid hydrophobic surfaces;Physical Review Letters,2004
3. Slippage of liquids over lyophobic solid surfaces;Journal of Colloid and Interface Science,1984
4. Improving tribological performance of mechanical components by laser surface texturing;Tribology Letters,2004
5. Improving fuel efficiency with laser surface textured piston rings;Tribology International,2009
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