| Literature DB >> 20592963 |
Jinghai Yang1, Haixia Yao, Yanqing Liu, Yongjun Zhang.
Abstract
The WSe(2) nanorods were synthesized via solid-state reaction method and characterized by X-ray diffractometer, TEM, and HRTEM. The results indicated the WSe(2) compounds had rod-like structures with diameters of 10-50 nm and lengths of 100-400 nm, and the growth process of WSe(2) nanorods was discussed on the basis of the experimental facts. The tribological properties of WSe(2) nanorods as additives in HVI500 base oil were investigated by UMT-2 multispecimen tribotester. Under the determinate conditions, the friction coefficient of the base oil containing WSe(2) nanorods was lower than that of the base oil, and decreased with increasing mass fraction of WSe(2) nanorods when it was <7 wt.%. Moreover, the base oil with the additives was rather suited to high load and high rotating speed. A combination of rolling friction, sliding friction, and stable tribofilm on the rubbing surface could explain the good friction and wear properties of WSe(2) nanorods as additives.Entities:
Year: 2008 PMID: 20592963 PMCID: PMC2893792 DOI: 10.1007/s11671-008-9183-8
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1XRD pattern of the WSe2nanorods
Figure 2aTEM image of WSe2nanorods.bHRTEM image of single WSe2nanorod.cTEM image of WSe2layers at different folding stages
Figure 3Variation of friction coefficients for the HVI500 base oil and the HVI500 base oil containing 7 wt.% WSe2nnaorods
Figure 4The wear scar of plate:aHVI500 base oil,bHVI500 base oil containing WSe2nanorods
Figure 5Variation of friction coefficient as a function of rotating speed forathe HVI500 base oil and the HVI500 base oil containing 2, 5, 7 wt.% WSe2nanorods at 200 N,bthe HVI500 base oil containing 7 wt.% WSe2nanorods for 30 min