The Adhesion and Tribological Properties of C-Bn Films Deposited by High Power Impulse Magnetron Sputtering
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Date
2019
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier Sci Ltd
Open Access Color
Green Open Access
Yes
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Publicly Funded
No
Abstract
Nitride based films are very important for industrial applications due to their mechanical and tribological properties. Among the nitride based films, c-BN films have superior properties. But, the adhesion properties of c-BN films deposited using magnetron sputtering with different power sources are inadequate generally. Recently, High Power Impulse Magnetron Sputtering (HiPIMS) power sources have been used to increase the adhesion of coatings and there is no open literature about c-BN deposited using HiPIMS. From this point, c-BN films were coated on 4140 steels using HiPIMS with closed-field unbalanced magnetron sputtering (CFUBMS). In the process, two B4C, two Ti targets and Ar + N-2 gas mixture were used to synthesize c-BN films. The amount of N-2 was altered as 2.5, 3.5 and 4.5sccm. The characteristic properties of c-BN films were analyzed using SEM, XRD and FT-IR. The mechanical properties were tested using a microhardness and scratch testers. The tribological properties were performed by a pin-on-disc tribotester under atmosphere, argon, and oil test conditions. The results showed that the properties of c-BN films deposited by HiPIMS are interesting. The hardness values were obtained above 36 GPa and the maximum critical load was reached to 80 N. Also, the minimum CoFs were observed as expected from the oil condition, in that case, the lowest CoF (mu congruent to 0.06) was noted from the hardest coating.
Description
Durkaya, Goksel/0000-0003-3962-2096
ORCID
Keywords
c-BN, HiPIMS, Adhesion, Friction
Turkish CoHE Thesis Center URL
Fields of Science
02 engineering and technology, 0210 nano-technology
Citation
WoS Q
Q1
Scopus Q

OpenCitations Citation Count
12
Source
Ceramics International
Volume
45
Issue
3
Start Page
3000
End Page
3006
PlumX Metrics
Citations
CrossRef : 14
Scopus : 14
Captures
Mendeley Readers : 21
SCOPUS™ Citations
14
checked on Jan 25, 2026
Web of Science™ Citations
10
checked on Jan 25, 2026
Page Views
3
checked on Jan 25, 2026
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