LICP OpenIR  > 固体润滑国家重点实验室(LSL)
Microstructure changes of self-mated fullerene-like hydrogenated carbon films from low friction to super-low friction with the increasing normal load
Department先进润滑与防护材料研究发展中心
Yue ZF(岳照凡); Wang YF(王永富); Zhang JY(张俊彦)
The second department先进润滑与防护材料研究发展中心
2018
Source PublicationDiamond and Related Materials
Issue88Pages:276-281
Abstract

Self-mated fullerene-like hydrogenated carbon films (FL-C:H films) realized the conversion from low friction (~0.012) to super-low friction (~0.006) state due to the increasing normal load. The structure changes in the conversion and the effect of environments (N2 and humid air) on the structure changes were discussed by the combination of SEM, TEM, Raman and XPS spectra. With the increasing normal load, smaller wear scar area (or contact area) and thicker tribofilm could be observed. At smaller scale (such as nanoscale), not only more perfect graphitic structure can be formed, but newly formed longer graphitic sheets
also tended to curve.

Indexed BySCI
If2.232
compositor第一作者单位
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/24417
Collection固体润滑国家重点实验室(LSL)
中国科学院材料磨损与防护重点实验室/先进润滑与防护材料研究发展中心
Affiliation固体润滑国家重点实验室
Recommended Citation
GB/T 7714
Yue ZF,Wang YF,Zhang JY. Microstructure changes of self-mated fullerene-like hydrogenated carbon films from low friction to super-low friction with the increasing normal load[J]. Diamond and Related Materials,2018(88):276-281.
APA Yue ZF,Wang YF,&Zhang JY.(2018).Microstructure changes of self-mated fullerene-like hydrogenated carbon films from low friction to super-low friction with the increasing normal load.Diamond and Related Materials(88),276-281.
MLA Yue ZF,et al."Microstructure changes of self-mated fullerene-like hydrogenated carbon films from low friction to super-low friction with the increasing normal load".Diamond and Related Materials .88(2018):276-281.
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