4.7 Article

Synergistic enhancing effect for mechanical and electrical properties of tungsten copper composites using spark plasma infiltrating sintering of copper-coated graphene

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SCIENTIFIC REPORTS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41598-017-18114-2

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  1. Royal academy of Engineering UK-Research Exchange with China
  2. Royal academy of Engineering UK-Research Exchange with India
  3. Electrical Materials and Infiltration Key Laboratory of Shaanxi Province [17JS080]
  4. Newton Mobility Grant through Royal Society [IE161019]
  5. National Natural Science Foundation of China
  6. Key Research and Development Projects of Shaanxi Province [2017ZDXM-GY-050]

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Successful applications of WCu alloys in high voltage electrical switches require their high strength and excellent conductivity. Unfortunately, the strategies for increasing their strength such as doping with fine particles and alloying often significantly decrease their conductivity. In this paper, we developed a new pathway for fabricating WCu alloys using spark plasma infiltrating sintering of copper-coated graphene (Cu@Gr) composite powders. Cu@Gr was found to partially prevent the formation of WC after sintering, and graphene was uniformly distributed on the surfaces of network Cu phases. Electrical conductivity of 38.512 M.S/m, thermal conductivity of 264W.m(-1).K-1 and micro hardness of 278 HV were achieved for the sintered WCu composites doped with only 0.8 wt.% Cu@Gr powders, which showed 95.3%, 24.3%, 28% enhancement compared with those from the conventional sintering using the undoped WCu powders.

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