264
Views
0
CrossRef citations to date
0
Altmetric
Research Articles

Synergistic reinforcement of Cu–Ni–Al films with dual nanostructure

, , , , , & show all
Pages 795-807 | Received 05 Jul 2020, Accepted 21 Aug 2020, Published online: 08 Sep 2020
 

ABSTRACT

Nanocrystalline-strengthened surface layer significantly improves the surface hardness and wear resistance of Cu or Cu alloys and avoids the reduction of conductivity. However, the poor thermal stability limits its industrial application. Herein, a series of Cu-Ni-Al films were prepared by radio frequency magnetron sputtering, which shows γ (∼20 nm) + γ′΄ phase (∼10 nm) dual nanostructure. Compared with pure Cu film, γ′ phase precipitation-strengthened films possess higher hardness, outstanding wear resistance and a certain electrical conductivity. The strengthening mechanisms have been discussed in detail. After annealing at 450°C/20 h, the hardness of Cu-Ni-Al films decreases slightly, but their wear resistance remains essentially unchanged, exhibiting superior thermal stability, the main reason of which is that the growth of nanocrystalline Cu can be retarded through the precipitation of γ′ phases.

Acknowledgements

This project was supported by the National Key R&D Program of China (grant number 2017YFB0306100), the Fundamental Research Funds for the Central Universities (grant number DUT17LAB09) and the Open Project of Key Laboratory of Materials Modification by Laser, Ion and Electron Beams (Dalian University of Technology), Ministry of Education (grant number KF1803).

Disclosure statement

No potential conflict of interest was reported by the author(s).

Additional information

Funding

This work was supported by the Fundamental Research Funds for the Central Universities [grant number DUT17LAB09], the National Key R&D Program of China [grant number 2017YFB0306100] and the Open Project of Key Laboratory of Materials Modification by Laser, Ion and Electron Beams (Dalian University of Technology), Ministry of Education (grant number KF1803).

Log in via your institution

Log in to Taylor & Francis Online

There are no offers available at the current time.

Related Research

People also read lists articles that other readers of this article have read.

Recommended articles lists articles that we recommend and is powered by our AI driven recommendation engine.

Cited by lists all citing articles based on Crossref citations.
Articles with the Crossref icon will open in a new tab.