Aluminum and copper matrix nanocomposites reinforced by graphene nanoplatelets (GNPs) were successfully fabricated by a wet mixing method followed by conventional powder metallurgy. The uniform dispersion of GNPs within the metal matrices showed that the wet mixing method has a great potential to be used as a mixing technique. However, by increasing the GNPs content, GNPs agglomeration was more visible. DSC and XRD of Al/GNPs nanocomposites showed that no new phase formed below the melting point of Al. Microstructural observations in both nanocomposites reveal the evident grain refinement effect as a consequence of GNPs addition. The interfacial bonding evaluation shows a poor interfacial bonding between GNPs and Al, while the interfacial b...
Classical powder metallurgy followed by either hot isostatic pressing (HIPing) or repressing-anneali...
In recent years, graphene nanoplatelets have attracted considerable research interest in all fields ...
In recent years, graphene nanoplatelets have attracted considerable research interest in all fields ...
Aluminum and copper matrix nanocomposites reinforced by graphene nanoplatelets (GNPs) were successfu...
In this research, copper nanocomposites reinforced by graphene nanoplatelets (GNPs) were fabricated ...
AbstractIn recent years, graphene has attracted considerable research interest in all fields of scie...
Graphene nanoplatelets (GNPs)/copper composites has been prepared by conventional powder metallurgy....
In the present study, the densification response of Al matrix reinforced with different weight perce...
In the present study, the densification response of Al matrix reinforced with different weight perce...
Two-dimensional graphene nanoplatelets with unique electrical, mechanical and thermophysical charact...
Two-dimensional graphene nanoplatelets with unique electrical, mechanical and thermophysical charact...
In recent years, aluminium (Al) matrix reinforced with graphene-based nanomaterial (GN) composites (...
AbstractIn present study, the microstructure, mechanical and electrochemical properties of aluminum–...
In this study, aluminum and graphene nanoplatelet (GNP) powders were mixed in different ratios and s...
In the present study, Cu and Al-based metal matrix composites (MMCs) have been developed by powder m...
Classical powder metallurgy followed by either hot isostatic pressing (HIPing) or repressing-anneali...
In recent years, graphene nanoplatelets have attracted considerable research interest in all fields ...
In recent years, graphene nanoplatelets have attracted considerable research interest in all fields ...
Aluminum and copper matrix nanocomposites reinforced by graphene nanoplatelets (GNPs) were successfu...
In this research, copper nanocomposites reinforced by graphene nanoplatelets (GNPs) were fabricated ...
AbstractIn recent years, graphene has attracted considerable research interest in all fields of scie...
Graphene nanoplatelets (GNPs)/copper composites has been prepared by conventional powder metallurgy....
In the present study, the densification response of Al matrix reinforced with different weight perce...
In the present study, the densification response of Al matrix reinforced with different weight perce...
Two-dimensional graphene nanoplatelets with unique electrical, mechanical and thermophysical charact...
Two-dimensional graphene nanoplatelets with unique electrical, mechanical and thermophysical charact...
In recent years, aluminium (Al) matrix reinforced with graphene-based nanomaterial (GN) composites (...
AbstractIn present study, the microstructure, mechanical and electrochemical properties of aluminum–...
In this study, aluminum and graphene nanoplatelet (GNP) powders were mixed in different ratios and s...
In the present study, Cu and Al-based metal matrix composites (MMCs) have been developed by powder m...
Classical powder metallurgy followed by either hot isostatic pressing (HIPing) or repressing-anneali...
In recent years, graphene nanoplatelets have attracted considerable research interest in all fields ...
In recent years, graphene nanoplatelets have attracted considerable research interest in all fields ...