Slip flow and thermal characteristics in gas thrust bearings with rough surfaces
Industrial Lubrication and Tribology
ISSN: 0036-8792
Article publication date: 17 April 2024
Issue publication date: 29 May 2024
Abstract
Purpose
This study aims to investigate the rarefaction effects on flow and thermal performances of an equivalent sand-grain roughness model for aerodynamic thrust bearing.
Design/methodology/approach
In this study, a model of gas lubrication thrust bearing was established by modifying the wall roughness and considering rarefaction effect. The flow and lubrication characteristics of gas film were discussed based on the equivalent sand roughness model and rarefaction effect.
Findings
The boundary slip and the surface roughness effect lead to a decrease in gas film pressure and temperature, with a maximum decrease of 39.2% and 8.4%, respectively. The vortex effect present in the gas film is closely linked to the gas film’s pressure. Slip flow decreases the vortex effect, and an increase in roughness results in the development of slip flow. The increase of roughness leads to a decrease for the static and thermal characteristics.
Originality/value
This work uses the rarefaction effect and the equivalent sand roughness model to investigate the lubrication characteristics of gas thrust bearing. The results help to guide the selection of the surface roughness of rotor and bearing, so as to fully control the rarefaction effect and make use of it.
Keywords
Acknowledgements
This study was financially supported by the National Natural Science Foundation of China (grant no. 52006031).
Citation
Xiong, C., Xu, B. and Chen, Z. (2024), "Slip flow and thermal characteristics in gas thrust bearings with rough surfaces", Industrial Lubrication and Tribology, Vol. 76 No. 4, pp. 453-463. https://doi.org/10.1108/ILT-10-2023-0318
Publisher
:Emerald Publishing Limited
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