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  4. Effect of Mo addition on the mechanical and tribological properties of magnetron sputtered TiN films
 
research article

Effect of Mo addition on the mechanical and tribological properties of magnetron sputtered TiN films

Moussaoui, Abderrahmane
•
Abboudi, Abdelaziz
•
Aissani, Linda
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October 15, 2023
Surface & Coatings Technology

Ternary-based titanium nitride (TiN) thin films have drawn attention toward rational applications due to their wear resistance, high hardness, and corrosion resistance. The influence of Mo content on the structural, tribo-logical, and mechanical properties of TiN films is reported in this study. The microstructure and elemental composition of the as-deposited TiMoN films were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD), nanoindentation, and ball-on-disc wear tests. XRD results showed that the as-sputtered TiMoN films consisted of a formation of solid solution of TiN and MoN mixture phases. With 18 at. % of Mo, the me-chanical property of TiMoN films was enhanced, and the film exhibited a high hardness of 28 GPa. Moreover, this addition led to a wear rate of 0.40 and 6.34 x 10-6 mm3/Nm and to lower the friction coefficient to values lower than the corresponding binary TiN film. This was attributed to the multi-phase strengthening and higher (H/E, H3/E2) values, which indicate that the mechanical properties and the wear resistance of TiN can be enhanced by alloying with Mo.

  • Details
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Type
research article
DOI
10.1016/j.surfcoat.2023.129862
Web of Science ID

WOS:001051527500001

Author(s)
Moussaoui, Abderrahmane
Abboudi, Abdelaziz
Aissani, Linda
Belgroune, Ahlam
Cheriet, Abderahmane
Alhussein, Akram
Rtimi, Sami  
Date Issued

2023-10-15

Publisher

ELSEVIER SCIENCE SA

Published in
Surface & Coatings Technology
Volume

470

Article Number

129862

Subjects

Materials Science, Coatings & Films

•

Physics, Applied

•

Materials Science

•

Physics

•

magnetron sputtering

•

timon nitride films

•

hardness

•

friction

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wear

•

titanium nitride coatings

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cathodic arc evaporation

•

thin-films

•

corrosion-resistance

•

multilayer coatings

•

wear-resistance

•

timon coatings

•

microstructure

•

dc

•

temperature

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GPAO  
Available on Infoscience
September 11, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/200582
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