Experimental investigation on the tribological properties of modified carbon nanotubes as the additive in castor oil
Abstract
Purpose
This paper aims to modify carbon nanotubes with oleic acid, and to study the tribological properties of castor oil with modified carbon nanotubes additives. The proper additives are sought for the future engineering application of castor oil.
Design/methodology/approach
Tribological properties of the castor oils mixed with the modified carbon nanotubes of four mass percentages were investigated using a four-ball testing rig. Coefficient of friction and wear scar diameter were obtained in each test, and the mechanism of modified carbon nanotubes and castor oil was discussed.
Findings
The results indicated that modified carbon nanotubes had better dispersion in castor oil. Coefficient of friction first increased, then decreased and finally grew stable with the time, and wear scar diameter of steel surface functioned as a first reduced then increased change with the additive mass percentage of modified carbon nanotubes. The minimum of average coefficient of friction and wear scar diameter occurred at 0.02 Wt.% modified carbon nanotubes.
Originality/value
A small amount of modified carbon nanotubes could improve properties of the castor oil, and the mixed castor oil with 0.02 Wt.% modified carbon nanotubes would be most possibly used in engineering applications.
Keywords
Acknowledgements
The work was financially sponsored by the National Natural Science Foundation of China (51205168, 51675232) and Jiangsu Key Laboratory of Large Engineering Equipment Detection and Control (Xuzhou Institute of Technology) (JSKLEDC201504). The authors gratefully acknowledge their financial support.
Citation
Qian, S., Wang, H., Huang, C. and Zhao, Y. (2018), "Experimental investigation on the tribological properties of modified carbon nanotubes as the additive in castor oil", Industrial Lubrication and Tribology, Vol. 70 No. 3, pp. 499-505. https://doi.org/10.1108/ILT-05-2017-0138
Publisher
:Emerald Publishing Limited
Copyright © 2018, Emerald Publishing Limited