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Featured researches published by Ruiling Li.


Journal of Applied Physics | 2009

Microstructure and tribological properties of Ti-contained amorphous carbon film deposited by DC magnetron sputtering

Ruiling Li; J.P. Tu; Chunfu Hong; D.G. Liu; D. H. Zhou; H. L. Sun

Pure amorphous carbon (a-C) film and that with a small amount of Ti were deposited on high speed steel (W18Cr4V) substrates by means of dc closed field unbalanced magnetron sputtering. The chemical composition and microstructure of the a-C films were performed using x-ray photoelectron spectroscopy, x-ray diffraction, Raman spectra, and transmission electron microscopy. The mechanical and tribological properties were evaluated using a nanoindentor, Rockwell and scratch tests, and a conventional ball-on-disk tribometer, respectively. The pure a-C film showed the high hardness (53 GPa), elastic modulus (289 GPa), but the poor adhesive strength. When adding a small amount of Ti to the a-C film, both the adhesive strength and the tribological properties were improved. The Ti contained a-C film had the low wear rate (1.9×10−17 m3 N−1 m−1) and friction coefficient in humid air.


Journal of Physics D | 2009

Structure of sp2 dominant a-C film with superhardness

Chunfu Hong; J.P. Tu; Ruiling Li; D.G. Liu; H L Sun; Scott X. Mao; R Peng

The mechanical properties of amorphous carbon (a-C) films strongly depend on the film structure. This paper reports on the superhardness of an a-C film resulting from a sp2 dominant microstructure synthesized by magnetron sputtering. The inherent medium compressive stress ensures the film is deposited with a thickness of 1.5 µm. The microstructure of the film with sp2 sites embedded in the amorphous matrix is responsible for the high elastic recovery and superhardness behaviour.


Advanced Materials Research | 2008

Preparation and Tribological Properties of Amorphous Ti/C Multilayers by Pulsed Laser Deposition

Chunfu Hong; Jiang Ping Tu; Ruiling Li; X.H. Zheng

Amorphous Ti/C multilayers were prepared on titanium-alloy and silicon (100)-wafer substrates by pulsed laser deposition. Films with different Ti concentration were synthesized by changing the ablating time for Ti and C targets. The morphology and microstructure of Ti/C multilayers were characterized by scanning electron microscopy (SEM), Raman spectroscopy and X-ray diffraction (XRD). Both of the Ti and C monolayers were amorphous. The metallic Ti stimulated the formation of more amorphous carbon phase by reducing the sp2 aromatic bonds and elongating the C-C chain bonds. The tribological properties of Ti/C multilayers were investigated by ball-on-disk tribometer. The pure C film and the multilayers containing more than 68.8 at.% of Ti showed low wear resistance. The multilayer contained 36.8 at.% of Ti exhibited the lowest wear rate at 3.54×10–16 m3/N·m. The formation of carbon related interlayer and its effect on tribological performance of the films were discussed.


Applied Surface Science | 2010

The electrochemical and mechanical properties of Ti incorporated amorphous carbon films in Hanks’ solution

Chunfu Hong; Jiangping Tu; D.G. Liu; Ruiling Li; C.D. Gu


Surface & Coatings Technology | 2009

Microstructure, mechanical and tribological properties of CrN/W2N multilayer films deposited by DC magnetron sputtering

Ruiling Li; Jiang Ping Tu; Chunfu Hong; D.G. Liu; H.L. Sun


Advanced Engineering Materials | 2010

The Effect of Stress Relaxation on the Microstructure and Hardness Evolution of Pure Amorphous-Carbon and C/Ti Multilayer Films†

Chunfu Hong; Jiangping Tu; C.D. Gu; Xiaohua Zheng; D.G. Liu; Ruiling Li; Scott X. Mao


Archive | 2008

Self-lubricating abrasion-proof graphite//TiC gradient composite thin film

Jiangping Tu; Ruiling Li; Chunfu Hong; Zhentai Wu


Surface & Coatings Technology | 2017

Deposition and characterization of a ZrN/Zr/a-C multilayer: Implication on bio-tribological and corrosion behaviors

W.Q. Bai; Lingling Li; Ruiling Li; C.D. Gu; X.L. Wang; G. Jin; D.G. Liu; J.P. Tu


Tribology Letters | 2010

Tribological Behavior of Hard W/NbN Superlattice Films

Chunfu Hong; Jiang Ping Tu; Ruiling Li; D.G. Liu; Scott X. Mao


Archive | 2009

Titanium-containing amorphous carbon high-hardness andwear resistant thin film

Jiangping Tu; Ruiling Li; Chunfu Hong; D.G. Liu

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Scott X. Mao

University of Pittsburgh

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