Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Analysis of Gas Lubricated Foil Thrust Bearings Using Coupled Finite Element and Finite Difference Methods

View through CrossRef
Load performance of gas lubricated, compliant surface foil thrust bearings has an interlocking relationship with the compliance of the bearing and hydrodynamics of convergent wedge surface. Compliance of the bearing consists of supporting spring elements (elastic foundation) and a smooth elastic top foil. In this paper, a class of gas lubricated foil thrust bearings has been investigated analytically utilizing a novel approach which combines Finite Difference (FD) and Finite Element (FE) methods. Solution of the governing hydrodynamic equations dealing with compressible fluid is coupled with the structural resiliency of the foil bearing surfaces. FD method is utilized for hydrodynamic analysis while FE is used to model structural resiliency. Influence coefficients were generated to address the elasticity effects of combined top foil and elastic foundation on the hydrodynamics of thrust bearing, and were used to expedite the numerical solution. Within 2 to 3 iterations the convergence criterion was reached. The overall program logic proved to be an efficient technique to deal with the complex structural compliance of various foil bearing. Case study has been conducted and sample solutions are provided. Unlike prior analytical investigations, the essential effect of the top foil on the performance of the bearing has been elucidated. [S0742-4787(00)02501-7]
Title: Analysis of Gas Lubricated Foil Thrust Bearings Using Coupled Finite Element and Finite Difference Methods
Description:
Load performance of gas lubricated, compliant surface foil thrust bearings has an interlocking relationship with the compliance of the bearing and hydrodynamics of convergent wedge surface.
Compliance of the bearing consists of supporting spring elements (elastic foundation) and a smooth elastic top foil.
In this paper, a class of gas lubricated foil thrust bearings has been investigated analytically utilizing a novel approach which combines Finite Difference (FD) and Finite Element (FE) methods.
Solution of the governing hydrodynamic equations dealing with compressible fluid is coupled with the structural resiliency of the foil bearing surfaces.
FD method is utilized for hydrodynamic analysis while FE is used to model structural resiliency.
Influence coefficients were generated to address the elasticity effects of combined top foil and elastic foundation on the hydrodynamics of thrust bearing, and were used to expedite the numerical solution.
Within 2 to 3 iterations the convergence criterion was reached.
The overall program logic proved to be an efficient technique to deal with the complex structural compliance of various foil bearing.
Case study has been conducted and sample solutions are provided.
Unlike prior analytical investigations, the essential effect of the top foil on the performance of the bearing has been elucidated.
[S0742-4787(00)02501-7].

Related Results

Recent Patents on Cageless Rolling Bearings
Recent Patents on Cageless Rolling Bearings
Background: Rolling bearings are widely used as core components in mechanical equipment. Most bearings are equipped with a cage. However, when bearings work under conditions of lar...
Along strike structural changes in thin-skinned thrusts: 3-D approach to the Leyre thrust (Southern Pyrenees). 
Along strike structural changes in thin-skinned thrusts: 3-D approach to the Leyre thrust (Southern Pyrenees). 
<p><span>Interpretation at depth of geological structures and cross-section reconstruction of fold and thrust belts requires either (1) constraints deri...
Foil Bearings Makes Oil-Free Turbocharger Possible
Foil Bearings Makes Oil-Free Turbocharger Possible
This paper describes an oil-free, 150 Hp turbocharger that was successfully operated with compliant foil bearings in a range of pitch and roll angles, including vertical operation,...
Effect of Corrosion Pit on the Structural Characteristics of Foil Journal Bearings
Effect of Corrosion Pit on the Structural Characteristics of Foil Journal Bearings
Abstract Due to corrosive environment, material loss in a localized area leads to formation of a corrosion pit. It diminishes the structural integrity and performanc...
Evaluation of Coated Top Foil Bearings: Dry Friction, Drag Torque, and Dynamic Force Coefficients
Evaluation of Coated Top Foil Bearings: Dry Friction, Drag Torque, and Dynamic Force Coefficients
Despite their many advantages, bump-type foil bearings (BFBs) have issues of dry-friction during sliding contact at rotor start/stop cycles. To prevent premature wear of both shaft...
A Review of Grooved Dynamic Gas Bearings
A Review of Grooved Dynamic Gas Bearings
Abstract This paper offers an extensive review of publications dealing with the modeling, the design, and the experimental investigation of grooved dynamic gas-lubri...
A numerical method to investigate the mixed lubrication performances of journal-thrust coupled bearings
A numerical method to investigate the mixed lubrication performances of journal-thrust coupled bearings
Purpose This paper aims to present a numerical model to investigate the mixed lubrication performances of journal-thrust coupled bearings (or coupled bearings). Design/methodolog...

Back to Top