Experimental investigation on the friction and sealing characteristics of narrow end-face seal ring with spiral grooves for wet clutch
Abstract
Purpose
The purpose of this paper is to investigate the friction and sealing characteristics of narrow end face seal ring with spiral grooves for wet clutch by experiment.
Design/methodology/approach
The shallow spiral grooves are machined in the end face of narrow seal ring by laser, and all of other parameters of specimens are the same with the actual production. The investigation of friction and sealing characteristics are carried out by comparing the experiment results of end face seal ring with spiral grooves with the conventional seal ring without spiral grooves through friction coefficient test, volume leakage rate test and pv value test.
Findings
Comparing with conventional seal ring without spiral grooves, seal ring with spiral grooves experiences boundary lubrication, mixed lubrication and fluid film lubrication with the increase of rotation speed, whereas the conventional seal ring only experiences mixed lubrication. Besides this, the volume leakage rate is slightly larger, but the pv value is much larger than that of conventional seal ring.
Originality/value
Effect of spiral grooves on the friction and sealing characteristics of narrow end face seal ring for wet clutch is investigated. The improved lubrication performance can be achieved by shallow spiral grooves even if the distance of radius difference used to machine grooves is very small.
Keywords
Acknowledgements
This research is supported by the National Natural Science Foundation of China under grant numbers 51175038 and 51105031.
Citation
Hu, J.B., Wei, C. and Li, X. (2015), "Experimental investigation on the friction and sealing characteristics of narrow end-face seal ring with spiral grooves for wet clutch", Industrial Lubrication and Tribology, Vol. 67 No. 3, pp. 240-245. https://doi.org/10.1108/ILT-10-2012-0099
Publisher
:Emerald Group Publishing Limited
Copyright © 2015, Emerald Group Publishing Limited