Mechanical properties of graphene nanoplates reinforced copper matrix composites prepared by electrostatic self-assembly and spark plasma sintering

作者:Shao, Guosen; Liu, Ping*; Zhang, Ke*; Li, Wei; Chen, Xiaohong; Ma, Fengcang
来源:Materials Science and Engineering A-Structural Materials Properties Microstructure and Processing, 2019, 739: 329-334.
DOI:10.1016/j.msea.2018.10.067

摘要

Since the densities of copper and graphene nanoplates (GNPs) are different, the synthesis of graphene nanoplates/copper (GNPs/Cu) composites is one of the challenges for the uniform dispersion of GNPs in the copper matrix. In this work, GNPs/Cu composites are synthesized by electrostatic self-assembly and spark plasma sintering. The result shows that GNPs are uniformly adsorbed on the surface of flake Cu powders, and the two-dimensional structure flake Cu powders improve the load-transfer efficiency of GNPs in the composites. Consequently, the tensile strength and Vickers hardness of 0.2 wt% GNPs/Cu composites have increased to 233 MPa and 108.6 HV, with 27% and 19% enhancements compared to pure Cu, respectively.