On the squeeze film lubrication of rough short porous partial journal bearings with micropolar fluids

Author:

Naduvinamani N B1,Santosh S2,Siddanagouda A3

Affiliation:

1. Department of Mathematics, Gulbarga University, Gulbarga, Karnataka, India

2. Government First Grade College, Shahapur, Karnataka, India

3. Department of Mathematics, Appa College of Engineering and Technology, Gulbarga, Karnataka, India

Abstract

In this article, a theoretical study of the effect of surface roughness on the squeeze film characteristics of short porous partial journal bearing lubricated with micropolar fluids is made. The modified averaged Reynolds equation accounting for the randomized surface roughness structure is mathematically derived. The Christensen stochastic theory of hydrodynamic lubrication of a rough surface is used to study the effect of two types of one-dimensional (1D) surface roughness on the squeeze film characteristics of a short porous partial journal bearing with micropolar fluid. It is assumed that the roughness asperity heights are small compared to the film thickness. It is observed that the transverse surface roughness pattern improves the squeeze film characteristics, whereas the squeeze film bearing performance is affected due to the presence of 1D longitudinal surface roughness. These effects are more pronounced for the micropolar fluids.

Publisher

SAGE Publications

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering

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1. Wavelet lifting method for the numerical solution of micropolar lubrication problem of porous journal bearing;International Journal of Ambient Energy;2023-08-17

2. Wavelet Lifting Scheme for the Numerical Solution of Dynamic Reynolds Equation for Micropolar Fluid Lubrication;International Journal of Computational Methods;2021-03-30

3. Theoretical investigation of porous hydrostatic journal bearing under micropolar fluid lubrication;Proceedings of the Institution of Mechanical Engineers, Part N: Journal of Nanomaterials, Nanoengineering and Nanosystems;2020-03

4. Influence of lubricants on the performance of journal bearings – a review;Tribology - Materials, Surfaces & Interfaces;2020-01-16

5. Evaluation of the performance characteristics of double-layered porous micropolar fluid lubricated journal bearing;Tribology International;2019-10

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