Thermo-hydrodynamic performance of tilted non-circular micropolar lubricated journal bearings

Author:

Rashidi Meybodi R.,Rasoolizadeh Shooroki A.,Zare Mehrjardi M.

Abstract

Purpose The purpose of this study is to examine the thermo-hydrodynamic performance of tilted non-circular journal bearings lubricated with a micropolar fluid. The investigated bearing types are two- and three-lobe journal bearings with finite length. Design/methodology/approach For this purpose, modified Reynolds, energy and three-dimensional Laplace equations are solved numerically by using generalized differential quadrature method. The effects of micropolarity characteristics of lubricants, such as characteristic length and coupling number, as well as tilt angle as a design parameter, on the performance of non-circular two- and three-lobe journal bearings are studied. Findings The results show that the tilt angle can affect the temperature and pressure profiles causing variation in the performance of non-circular bearings. Increasing coupling number and decreasing characteristic length cause the load-carrying capacity to decrease because of the increase in maximum oil temperature of the fluid film of lubricant and decrease in the minimum oil base viscosity. So, it is possible to select suitable values of tilt angle for achieving optimum performance of these bearings. Originality/value The non-circular bearings suggest several design parameters such as tilt angle for designers. By considering thermal effects for micropolar lubricant, the requirements of a specific application can be fulfilled.

Publisher

Emerald

Subject

Surfaces, Coatings and Films,General Energy,Mechanical Engineering

Reference24 articles.

1. Lubrication theory for micropolar fluids;Journal of Applied Mechanics,1971

2. Thermohydrodynamic characteristics of worn journal bearing lubricated with oil containing nanoparticles additive;Al-Nahrain Journal for Engineering Sciences (NJES),2017

3. Steady state thermo-hydrodynamic analysis of two-axial groove and multilobe hydrodynamic bearings;Tribology in Industry,2014

4. Thermohydrodynamic analysis of elliptical journal bearing with different grade oils;Tribology International,2010

5. Investigations on the thermal effects in non-circular journal bearings;Tribology International,2011

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