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Patel, R.M. and Deheri, G.M., “Magnetic fluid based film between two curved plates lying along the surfaces determined by secant functions,” Indian J. of Eng. and Mater. Sci., 9, 45-48, 2002.

has been cited by the following article:

Article

Study of Double Porous Layered Slider Bearing with Various Designed Stator under the Effects of Slip and Squeeze Velocity Using Magnetic Fluid Lubricant

1Department of Mathematics, Som-Lalit Institute of Computer Applications, Ahmedabad, India

2Department of Mathematics and Humanities, Vishwakarma Government Engineering College, Ahmedabad, India


American Journal of Applied Mathematics and Statistics. 2020, Vol. 8 No. 2, 43-51
DOI: 10.12691/ajams-8-2-2
Copyright © 2020 Science and Education Publishing

Cite this paper:
Ramesh C Kataria, Darshana A Patel. Study of Double Porous Layered Slider Bearing with Various Designed Stator under the Effects of Slip and Squeeze Velocity Using Magnetic Fluid Lubricant. American Journal of Applied Mathematics and Statistics. 2020; 8(2):43-51. doi: 10.12691/ajams-8-2-2.

Correspondence to: Ramesh  C Kataria, Department of Mathematics, Som-Lalit Institute of Computer Applications, Ahmedabad, India. Email:

Abstract

A comparative mathematical analysis of slider bearing made up of double porous layered slider supported by solid wall with different designed stator such as convex, parallel, exponential, inclined, and secant is presented in this research paper. The study includes the effect of slip velocity as suggested by Sparrow et al. [13] at the interface of film-porous. Effects of squeeze velocity and the oblique variable magnetic field to the lower plate are considered. General form of Reynolds type equation, non-dimensional squeeze film pressure and load carrying capacity expressions are obtained. The values of non-dimensional load carrying capacity are obtained and compared among various considered designs bearings. Overall, it could be concluded that compared to others, secant pad stator slider bearing is suggested for the superior performance of the system.

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