Journal of Alloys and Compounds2022,Vol.8918.DOI:10.1016/j.jallcom.2021.162058

Surface modification on copper particles toward graphene reinforced copper matrix composites for electrical engineering application

Wu M. Dan Dai Yang K. Wang B. Xue C. Ma H. Lin C.-T. Jiang N. Ihde J. Zhang Q. Zhang X. Ren W. Han J. Ma Y. Chen X. Shu S. Yuan Q. Dai W.
Journal of Alloys and Compounds2022,Vol.8918.DOI:10.1016/j.jallcom.2021.162058

Surface modification on copper particles toward graphene reinforced copper matrix composites for electrical engineering application

Wu M. 1Dan Dai 1Yang K. 1Wang B. 1Xue C. 1Ma H. 1Lin C.-T. 1Jiang N. 1Ihde J. 2Zhang Q. 3Zhang X. 4Ren W. 4Han J. 5Ma Y. 5Chen X. 6Shu S. 1Yuan Q. 1Dai W.1
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作者信息

  • 1. Key Laboratory of Marine Materials and Related Technologies Zhejiang Key Laboratory of Marine Materials and Protective Technologies Ningbo Institute of Materials Technology and Engineering (NIMTE) Chinese Academy of Sciences
  • 2. Fraunhofer Institute for Manufacturing Technology and Advanced Materials IFAM
  • 3. Key Laboratory of Interface Science and Engineering in Advanced Materials Ministry of Education Taiyuan University of Technology
  • 4. School of Electrical Engineering and Automation Harbin Institute of Technology
  • 5. State Key Laboratory of Quantum Optics and Quantum Optics Devices Institute of Laser Spectroscopy Collaborative Innovation Center of Extreme Optics Shanxi University
  • 6. Faculty of Technology Natural Sciences and Maritime Sciences Department of Microsystems University of Southeast Norway
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Abstract

Graphene has been demonstrated as an effective reinforcement for metal matrix composites, due to its excellent mechanical properties, robust chemical inertness, thermal stability, and self-lubricating. Nevertheless, the limiting factor for its further use in metal matrix composites, is to realize the homogeneous dispersion of graphene for taking advantage of its exceptional and fascinating properties, because of the poor wettability and density contrast between metal matrix and graphene. Herein, we design a gel-assisted route to synthesize high-quality graphene nanoplatelets modified monodispersed copper particles, followed by hot pressing to fabricate graphene reinforced copper matrix composites bulk. This simple route with high efficiency and low cost, offers a new solution for the mass-production of graphene reinforced copper matrix composites and other graphene-based composites on an industrial scale. Significantly enhanced tensile strength of 253 MPa, and yield strength of 145 MPa, accompanied by the low friction coefficient and improved wear resistance, can be simultaneously achieved in the composites. For the real electrical contact performance test, the service life of electrical contacts made of graphene reinforced copper matrix composites, is 10 times longer as that of the commercial pure copper electrical contacts and almost comparable to CuAg20 contacts, demonstrating its superior ability to solve the electrical contact issues in electrical engineering systems.

Key words

Copper matrix composite/Graphene nanoplatelet/Surface modification

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量7
参考文献量34
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