Microstructure and nanoindentation behavior of Cu composites reinforced with graphene nanoplatelets by electroless co-deposition technique

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作者
Qi Zhang
Zhenbo Qin
Qin Luo
Zhong Wu
Lei Liu
Bin Shen
Wenbin Hu
机构
[1] Shanghai Jiao Tong University,State Key Laboratory of Metal Matrix Composites
[2] Collaborative Innovation Center for Advanced Ship and deep-Sea Exploration,School of Material Science and Engineering
[3] Tianjin University,undefined
来源
Scientific Reports | / 7卷
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摘要
A reduced graphene oxide/copper (RGO/Cu) composite was fabricated by a surfactant free, electroless co-deposition technique. The graphene oxide (GO) sheets were reduced and RGO homogeneous distributed into the copper matrix. On the basis of nanoindentation, the presence of RGO and the increase of its content in matrix significantly raised the hardness of RGO/Cu composites. Here, the relevant strengthening effect and mechanisms involved in RGO-reinforced Cu composites were systematically evaluated. Especially, the addition of RGO in Cu matrix led to the compressive micro-strain, and the resulted distortion of the lattice parameter was calculated based on Cohen’s method. However, excessive addition of GO in the electrolyte could decrease the mechanical performance due to agglomeration of RGO. Apparently, the optimal concentration for GO dispersion in co-deposition solution was deserved to discuss. After a serious of relative experiments, we could get a conclusion that this method provided a new pathway for embedded graphene into the metal matrix to improve the mechanical properties of RGO-reinforced materials.
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[1]  
Bastwros M(2014)Effect of ball milling on graphene reinforced Al6061 composite fabricated by semi-solid sintering Composites Part B: Engineering 60 111-118
[2]  
Rashad M(2014)Synergetic effect of graphene nanoplatelets (GNPs) and multi-walled carbon nanotube (MW-CNTs) on mechanical properties of pure magnesium Journal of Alloys and Compounds 603 111-118
[3]  
Pan F(2015)Strengthening behavior of few-layered graphene/aluminum composites Carbon 82 143-151
[4]  
Tang A(2014)Enhanced strength in bulk graphene-copper composites Phys. Status Solidi A Appl. Mater. Sci. 211 184-190
[5]  
Asif M(2012)Reinforcement with graphene nanosheets in aluminum matrix composites Scripta Materialia 66 594-597
[6]  
Aamir M(2011)Graphene–aluminum nanocomposites Materials Science and Engineering: A 528 7933-7937
[7]  
Shin SE(2015)Enhanced tensile properties of magnesium composites reinforced with graphene nanoplatelets Mater. Sci. Eng. A 630 36-44
[8]  
Choi HJ(2012)Preparation of Ni-reduced graphene oxide nanocomposites by Pd-activated electroless deposition and their magnetic properties Applied Surface Science 258 8603-8608
[9]  
Shin JH(2013)Graphene-nickel composites Applied Surface Science 273 484-490
[10]  
Bae DH(2014)Material properties of graphene/aluminum metal matrix composites fabricated by friction stir processing Int. J. Precis. Eng. Manuf. 15 1235-1239