Metal laminated composites are widely used in industrial and commercial applications due to their excellent overall performance. In this study, the copper/graphene-aluminum-copper/graphene (Cu/Gr-Al-Cu/Gr) laminated composites were prepared by ingenious hot pressing design. Raman, optical microscope (OM), scanning electron microscope (SEM), van der Pauw (vdP), and X-Ray Diffractometer (XRD) were used to investigate the graphene status, interface bonding, diffusion layer thickness, electrical conductivity, Miller indices and secondary phases, respectively. The results demonstrate that the Cu-Al interfaces in the Cu/Gr-Al-Cu/Gr composites were free of pores, cracks and other defects and bonded well. The number of graphene layers was varied by...
In this work, synthesis of copper/reduced graphene oxide composites to increase the electrical condu...
Copper is often used as a heat-dissipating material due to its high thermal conductivity. In order t...
Heat sink materials with superior thermal conductivity and excellent mechanical strength with low co...
A light-weight, robust and highly thermal conductive copper/graphene film laminated structure was de...
In this study, Cu matrix composites reinforced with reduced graphene oxide-coated submicron spherica...
Owing to the unfavorable wetting and density difference between graphene and copper, it remains chal...
Aluminum and copper matrix nanocomposites reinforced by graphene nanoplatelets (GNPs) were successfu...
Graphene has been demonstrated as an effective reinforcement for metal matrix composites, due to its...
Graphene, with its excellent mechanical properties and electrical conductivity, has been considered ...
The strength–ductility trade-off has been a long-standing challenge when designing and fabricating a...
Copper-based materials are common industrial products which have been broadly applied to the fields ...
For metal matrix composites (MMCs), introduction of low-dimensional nano-carbon materials (NCMs) int...
Cu is widely used to contact materials because of its excellent electrical conductivity and economic...
Cu/graphene nanosheets composites were fabricated at 800°C by the hot-pressing method using Cu and g...
Copper matrix composites reinforced with graphene nanoplatelets (GNPs) were prepared via molecularle...
In this work, synthesis of copper/reduced graphene oxide composites to increase the electrical condu...
Copper is often used as a heat-dissipating material due to its high thermal conductivity. In order t...
Heat sink materials with superior thermal conductivity and excellent mechanical strength with low co...
A light-weight, robust and highly thermal conductive copper/graphene film laminated structure was de...
In this study, Cu matrix composites reinforced with reduced graphene oxide-coated submicron spherica...
Owing to the unfavorable wetting and density difference between graphene and copper, it remains chal...
Aluminum and copper matrix nanocomposites reinforced by graphene nanoplatelets (GNPs) were successfu...
Graphene has been demonstrated as an effective reinforcement for metal matrix composites, due to its...
Graphene, with its excellent mechanical properties and electrical conductivity, has been considered ...
The strength–ductility trade-off has been a long-standing challenge when designing and fabricating a...
Copper-based materials are common industrial products which have been broadly applied to the fields ...
For metal matrix composites (MMCs), introduction of low-dimensional nano-carbon materials (NCMs) int...
Cu is widely used to contact materials because of its excellent electrical conductivity and economic...
Cu/graphene nanosheets composites were fabricated at 800°C by the hot-pressing method using Cu and g...
Copper matrix composites reinforced with graphene nanoplatelets (GNPs) were prepared via molecularle...
In this work, synthesis of copper/reduced graphene oxide composites to increase the electrical condu...
Copper is often used as a heat-dissipating material due to its high thermal conductivity. In order t...
Heat sink materials with superior thermal conductivity and excellent mechanical strength with low co...