Stability of four-axial and six-axial grooved water-lubricated journal bearings under dynamic load

Author:

Pai R S1,Pai R1

Affiliation:

1. Department of Mechanical and Manufacturing Engineering, Manipal Institute of Technology, Manipal, Karnataka, India

Abstract

The non-linear transient analysis of water-lubricated journal bearings having four-axial and six-axial grooves is studied theoretically. The time-dependent form of the generalized Reynolds equation has been written as the governing equation in non-dimensional form. The Reynolds equation is solved by a finite-difference technique with a successive over-relaxation scheme, satisfying the Jakobsson—Floberg—Olsson boundary conditions. A non-linear time-transient analysis is carried out and the stability of journal is studied. The equations of motion are solved by the fourth-order Runge—Kutta method to obtain the eccentricity ratio, attitude angle, and their derivatives for the next time step.\newline\indent This study is performed for unidirectional constant load, unidirectional periodic load, and variable rotating load. The journal locus is plotted from the values of eccentricity ratio and attitude angle, and it helps in predicting the status of the system.

Publisher

SAGE Publications

Subject

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

Reference5 articles.

1. Analysis of water-lubricated journal bearings with multiple axial grooves

2. 2 Allaire P. E. Design of journal bearings for high speed rotating machinery, fundamentals of the design of fluid film bearings, 1979, pp. 45–83 (ASME, New York).

3. Stability Contours for a Whirling Finite Journal Bearing

4. Influence of the flow prehistory in the cavitation zone on the dynamic characteristics of slide bearings

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