WOS: A1990EU16800007In this paper, an investigation into the lubrication aspect of thrust bearings is presented by describing a numerical method in which Reynolds' equation was solved in finite difference form. The theoretical model developed is capable of calculating the pressure distribution in the lubricating fluid film and the load-carrying capacity as a separating force. Certain assumptions were made to simplify the analysis. Sample runs were made to test the validity of the solution
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
In the paper the influence of both bearing surfaces roughness and porosity of one bearing surface on...
In this paper, an investigation into the lubrication aspect of thrust bearings is presented by descr...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
In the paper the influence of bearing surfaces roughness on the pressure distribution and load-carry...
In the present work, several numerical methods for the analysis of compressible squeeze film thrust ...
The understanding of the behavior of hydrodynamic bearings requires the analysis of the fluid film b...
This paper relates the turbulent motion in the lubricant fluid film with centrifugal effect and the ...
A variational principle for a thin-film incompressible flow with viscous dissipation has already bee...
Reynolds equation is a partial differential equation, derived from the Navier-Stokes equations.Reyno...
This master´s thesis solves the problem of stationary viscous flow of incompressible fluids in thin ...
The solution of the energy equation of thermo-elasto-hydrodynamic analysis for bearings by the finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
In the paper the influence of both bearing surfaces roughness and porosity of one bearing surface on...
In this paper, an investigation into the lubrication aspect of thrust bearings is presented by descr...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
In the paper the influence of bearing surfaces roughness on the pressure distribution and load-carry...
In the present work, several numerical methods for the analysis of compressible squeeze film thrust ...
The understanding of the behavior of hydrodynamic bearings requires the analysis of the fluid film b...
This paper relates the turbulent motion in the lubricant fluid film with centrifugal effect and the ...
A variational principle for a thin-film incompressible flow with viscous dissipation has already bee...
Reynolds equation is a partial differential equation, derived from the Navier-Stokes equations.Reyno...
This master´s thesis solves the problem of stationary viscous flow of incompressible fluids in thin ...
The solution of the energy equation of thermo-elasto-hydrodynamic analysis for bearings by the finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
In the paper the influence of both bearing surfaces roughness and porosity of one bearing surface on...