Based upon a Gecim-Winer fluid flow model, a curvilinear squeeze film bearing is considered. The equations of motion are given in a specific coordinates system. After general considerations on the Gecim-Winer fluid flow these equations are used to derive the Reynolds equation. The solution of this equation is obtained by a method of successive approximation. As a result one obtains formulae expressing the pressure distribution and load-carrying capacity. The numerical examples of the Gecim-Winer fluid flow in gaps of two simple bearings: radial and spherical are presented
The squeeze film effect was discussed in several fields, but mostly under the same pressure boundary...
The aim of this work is to determine the hydrodynamic pressure distribution in oil film and the load...
This project investigates the squeeze film effects of bearings with spiral groove design at various ...
The present theoretical analysis is to investigate the effect of non-Newtonian lubricant modelled by...
In this paper, the solution to a problem of pressure distribution in a curvilinear squeeze film sphe...
Lubricants with variable viscosity are assuming importance for their applications in polymer industr...
Abstract This project investigates the squeeze film effect of varying film thicknesses above a be...
The present work deals with analyses of the effects of bearing curvature and non-Newtonian character...
In the paper the influence of both bearing surfaces roughness and porosity of one bearing surface on...
In the present work, several numerical methods for the analysis of compressible squeeze film thrust ...
We derived a Reynolds type equation for a ferrofluid lubrication in a squeeze film between two circu...
In the paper the influence of both bearing surfaces roughness and porosity of one bearing surface on...
Squeeze film geometry of truncated cone. Lower porous plate squeeze film orientation of various shap...
Squeeze film geometry of truncated cone. Lower porous plate squeeze film orientation of various shap...
In the paper the influence of bearing surfaces roughness on the pressure distribution and load-carry...
The squeeze film effect was discussed in several fields, but mostly under the same pressure boundary...
The aim of this work is to determine the hydrodynamic pressure distribution in oil film and the load...
This project investigates the squeeze film effects of bearings with spiral groove design at various ...
The present theoretical analysis is to investigate the effect of non-Newtonian lubricant modelled by...
In this paper, the solution to a problem of pressure distribution in a curvilinear squeeze film sphe...
Lubricants with variable viscosity are assuming importance for their applications in polymer industr...
Abstract This project investigates the squeeze film effect of varying film thicknesses above a be...
The present work deals with analyses of the effects of bearing curvature and non-Newtonian character...
In the paper the influence of both bearing surfaces roughness and porosity of one bearing surface on...
In the present work, several numerical methods for the analysis of compressible squeeze film thrust ...
We derived a Reynolds type equation for a ferrofluid lubrication in a squeeze film between two circu...
In the paper the influence of both bearing surfaces roughness and porosity of one bearing surface on...
Squeeze film geometry of truncated cone. Lower porous plate squeeze film orientation of various shap...
Squeeze film geometry of truncated cone. Lower porous plate squeeze film orientation of various shap...
In the paper the influence of bearing surfaces roughness on the pressure distribution and load-carry...
The squeeze film effect was discussed in several fields, but mostly under the same pressure boundary...
The aim of this work is to determine the hydrodynamic pressure distribution in oil film and the load...
This project investigates the squeeze film effects of bearings with spiral groove design at various ...