Influence of Ti content on the structure and tribological properties of Ti-DLC coatings in water lubrication
Influence of Ti content on the structure and tribological properties of Ti-DLC coatings in water lubrication
The Ti-DLC coatings with varying Ti content were deposited on Si(100) wafers and 316 L stainless steel substrates using unbalanced magnetron sputtering (UMS) from Ti and C elemental targets at different Ti target currents. The influence of Ti content on the microstructure and phase composition of Ti-DLC films were studied systematically. The tribological properties of Ti-DLC coatings sliding against Al2O3 balls in water were investigated using ball-on-disc tribometer, and the worn surfaces on Ti-DLC coatings were analyzed using scanning electronic microscopy and non-contact profilometer. It was revealed that the sp3/sp2 carbon ratio first increased as the Ti content increased in the DLC films and then tended to decrease with the further increase of Ti content. TiC nanocrystallites were generated in the DLC coatings. It was also demonstrated that the Ti-DLC coatings with moderate Ti content exhibited enhanced mechanical properties, such as higher hardness and improved tribological behaviors as sliding against Al2O3 balls in water lubrication.
diamond-like coatings, microstructure, hardness, friction, wear
163-175
Wang, Qianzhi
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Zhou, Fei
aaf54725-aefa-4df9-a69c-07b3f60060fc
Zhou, Zhifeng
fb070de3-bcb2-4923-9c60-e76b61f89f5f
Yang, Yang
d1e03c97-703a-4139-bb00-6db4be624188
Yan, Ce
18daacb6-1022-4db4-82fe-c5af21522d6e
Wang, Chundong
4a326956-38ca-4bc9-9077-03904b950e27
Zhang, Wenjun
5fec7a3f-8b30-4f58-86ea-f75b82efdda0
Li, Lawrence Kwok-Yan
1be013ff-b4b7-4479-a8b6-08a515c967e6
Bello, Igor
01a2c040-fcdb-47b6-ac2b-c23683f2e84b
Lee, Shuit-Tong
bca61648-b3cc-4c93-a582-76e995c2c7ce
May 2012
Wang, Qianzhi
696b2954-9bbe-4e19-a9d2-22435e55d9b4
Zhou, Fei
aaf54725-aefa-4df9-a69c-07b3f60060fc
Zhou, Zhifeng
fb070de3-bcb2-4923-9c60-e76b61f89f5f
Yang, Yang
d1e03c97-703a-4139-bb00-6db4be624188
Yan, Ce
18daacb6-1022-4db4-82fe-c5af21522d6e
Wang, Chundong
4a326956-38ca-4bc9-9077-03904b950e27
Zhang, Wenjun
5fec7a3f-8b30-4f58-86ea-f75b82efdda0
Li, Lawrence Kwok-Yan
1be013ff-b4b7-4479-a8b6-08a515c967e6
Bello, Igor
01a2c040-fcdb-47b6-ac2b-c23683f2e84b
Lee, Shuit-Tong
bca61648-b3cc-4c93-a582-76e995c2c7ce
Wang, Qianzhi, Zhou, Fei, Zhou, Zhifeng, Yang, Yang, Yan, Ce, Wang, Chundong, Zhang, Wenjun, Li, Lawrence Kwok-Yan, Bello, Igor and Lee, Shuit-Tong
(2012)
Influence of Ti content on the structure and tribological properties of Ti-DLC coatings in water lubrication.
Diamond and Related Materials, 25, .
(doi:10.1016/j.diamond.2012.03.005).
Abstract
The Ti-DLC coatings with varying Ti content were deposited on Si(100) wafers and 316 L stainless steel substrates using unbalanced magnetron sputtering (UMS) from Ti and C elemental targets at different Ti target currents. The influence of Ti content on the microstructure and phase composition of Ti-DLC films were studied systematically. The tribological properties of Ti-DLC coatings sliding against Al2O3 balls in water were investigated using ball-on-disc tribometer, and the worn surfaces on Ti-DLC coatings were analyzed using scanning electronic microscopy and non-contact profilometer. It was revealed that the sp3/sp2 carbon ratio first increased as the Ti content increased in the DLC films and then tended to decrease with the further increase of Ti content. TiC nanocrystallites were generated in the DLC coatings. It was also demonstrated that the Ti-DLC coatings with moderate Ti content exhibited enhanced mechanical properties, such as higher hardness and improved tribological behaviors as sliding against Al2O3 balls in water lubrication.
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Accepted/In Press date: 9 March 2012
e-pub ahead of print date: 15 March 2012
Published date: May 2012
Keywords:
diamond-like coatings, microstructure, hardness, friction, wear
Organisations:
nCATS Group
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Local EPrints ID: 377171
URI: http://eprints.soton.ac.uk/id/eprint/377171
ISSN: 0925-9635
PURE UUID: 46526456-e69a-412f-9082-dd9deb7ebb4e
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Date deposited: 01 Jun 2015 14:18
Last modified: 14 Mar 2024 19:57
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Author:
Qianzhi Wang
Author:
Fei Zhou
Author:
Zhifeng Zhou
Author:
Yang Yang
Author:
Ce Yan
Author:
Chundong Wang
Author:
Wenjun Zhang
Author:
Lawrence Kwok-Yan Li
Author:
Igor Bello
Author:
Shuit-Tong Lee
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