Javascript must be enabled to continue!
Comparative Evaluation of Foil Bearings With Different Compliant Structures for Improved Manufacturability
View through CrossRef
Potential geometrical deviations in bump foil bearings due to manufacturing uncertainty can have significant effects on both the local stiffness and clearance, and hence, affecting the overall bearing performance. The manufacturing uncertainty of bump type foil bearings was investigated, showing large geometrical deviations, using a developed measurement tool for the formed bump foils. A reduced order foil bearing model was used in a Monte Carlo simulation studying the effect of manufacturing noise on the onset of instability, highlighting the sensitivity of the rotor-bearing system to such manufacturing deviations. It was found that 30% of the simulated cases resulted improvements in stability, the remaining cases underperformed. Attempting to increase the robustness of the bearing, two other compliant structures replacing the classical gen-II bump foils were investigated from a manufacturing perspective. The first is a modified bump type Sinusoidal foil, and the second is the Cantilever beam foil. Consequently, quasi-static load-displacement tests were executed showing deviations in local clearance and stiffness for the classical bump type compliant structure compared to the other designs. It was found that the Cantilever beam foils yield more robustness compared to the bump type foils. Finally, an analytical model for the sequential engagement of the compliant structure is presented and validated with experimental measurements for both bump type and Cantilever structures.
American Society of Mechanical Engineers
Title: Comparative Evaluation of Foil Bearings With Different Compliant Structures for Improved Manufacturability
Description:
Potential geometrical deviations in bump foil bearings due to manufacturing uncertainty can have significant effects on both the local stiffness and clearance, and hence, affecting the overall bearing performance.
The manufacturing uncertainty of bump type foil bearings was investigated, showing large geometrical deviations, using a developed measurement tool for the formed bump foils.
A reduced order foil bearing model was used in a Monte Carlo simulation studying the effect of manufacturing noise on the onset of instability, highlighting the sensitivity of the rotor-bearing system to such manufacturing deviations.
It was found that 30% of the simulated cases resulted improvements in stability, the remaining cases underperformed.
Attempting to increase the robustness of the bearing, two other compliant structures replacing the classical gen-II bump foils were investigated from a manufacturing perspective.
The first is a modified bump type Sinusoidal foil, and the second is the Cantilever beam foil.
Consequently, quasi-static load-displacement tests were executed showing deviations in local clearance and stiffness for the classical bump type compliant structure compared to the other designs.
It was found that the Cantilever beam foils yield more robustness compared to the bump type foils.
Finally, an analytical model for the sequential engagement of the compliant structure is presented and validated with experimental measurements for both bump type and Cantilever structures.
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...
Primerjalna književnost na prelomu tisočletja
Primerjalna književnost na prelomu tisočletja
In a comprehensive and at times critical manner, this volume seeks to shed light on the development of events in Western (i.e., European and North American) comparative literature ...
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...
Head-to-head hydrodynamic performance comparison of six foil setups with four and two foil configurations on trimarans in different operational conditions
Head-to-head hydrodynamic performance comparison of six foil setups with four and two foil configurations on trimarans in different operational conditions
Achieving high efficiency and performance is essential in both the commercial and maritime sectors, where the selection of foil configurations significantly influences a vessel's o...
Experimental and Numerical Investigation of the High-Speed Instability of Aerodynamic Foil Journal Bearings for Micro Turbomachinery
Experimental and Numerical Investigation of the High-Speed Instability of Aerodynamic Foil Journal Bearings for Micro Turbomachinery
Foil bearings have been attracting considerable attention for their applications to micro turbomachinery, such as blowers and compressors, because of their excellent stability at h...
Constraint-Force-Based (CFB) Modeling of Compliant Mechanisms
Constraint-Force-Based (CFB) Modeling of Compliant Mechanisms
Numerous works have been done on modeling compliant modules or joints, and the closed-form models of many widely-used compliant modules have been developed. However, the modeling o...

