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- Title
LOAD-CARRYING CAPACITY OF PIVOTED CURVED SLIDER BEARINGS SUBJECT TO SURFACE ROUGHNESS PATTERN AND NON-NEWTONIAN FLUID FLOW BEHAVIOR.
- Authors
Rahul, Amit Kumar; Singh, Manoj Kumar; Sivaya, Om Namah; Maury, Saurabh Chandra; Tiwari, Ravi; Biswas, Rohahn
- Abstract
The present paper analyzes the Rabinowitsch fluid (RF) behavior on a pivoted curved slider with surface roughness (SR) with the aid of the perturbation technique. In order to account for the random roughness of the bearing surfaces, a stochastic random variable with a nonzero mean, variance, and skewness was taken into consideration. The averaged Reynolds equation (RE) was developed using a stochastic random variable. The load carrying capacity (LCC) and centre of pressure (COP) were obtained by solving the relevant stochastically averaged RE with appropriate boundary conditions. Bearing performance was observed to suffer as a result of transverse SR; nevertheless, the bearing system's efficiency can be increased in the case of negatively-skewed SR. It was demonstrated that, unlike a traditional lubricant, the bearing can withstand a LCC even in the absence of flow. The outcomes of the current paper can be helpful in various modern mathematical physics engineering applications.
- Subjects
NON-Newtonian flow (Fluid dynamics); NON-Newtonian fluids; MATHEMATICAL physics; REYNOLDS equations; FLUID flow
- Publication
Journal of the Serbian Society for Computational Mechanics, 2024, Vol 18, Issue 1, p110
- ISSN
1820-6530
- Publication type
Article
- DOI
10.24874/jsscm.2024.18.01.08