For metal matrix composites (MMCs), introduction of low-dimensional nano-carbon materials (NCMs) into three dimensional metallic matrix is commonly applied to enhance mechanical and physical properties of metals and thus significantly extend their wide range applications. However, the interfaces between the NCMs and metal matrix are always a major issue for achieving the best enhancement effects. In this paper, we investigated interfacial structures of graphene nanoplates (GNPs) reinforced Cu matrix composites fabricated using a simple and industrially scalable strategy, through integration of interface engineering design methodology and a spark plasma sintering (SPS) process. We then systematically evaluated their physico-mechanical proper...
Two-dimensional graphene plateletes with unique mechanical, electrical and thermo-physical properti...
Copper matrix composites reinforced with graphene nanoplatelets (GNPs) were prepared via molecularle...
The thesis takes inspiration from the worldwide issues related to the shortage of critical raw mater...
For metal matrix composites (MMCs), introduction of low-dimensional nano-carbon materials (NCMs) int...
The incorporation of low-dimensional nanomaterials into 3D metal matrices are promising to translate...
Currently, seldom studies have paid close attention to the impact of the defects and oxygen-containi...
Copper matrix composites reinforced with carbide-coated graphene nanoplatelets (GNPs) were investiga...
In order to solve problems of significant interfacial reactions and agglomeration in graphene reinfo...
Graphene-embedded Cu matrix composites (GE-CMCs), as one of typical versatile functional composite m...
The strength–ductility trade-off has been a long-standing challenge when designing and fabricating a...
Graphene has been demonstrated as an effective reinforcement for metal matrix composites, due to its...
Graphene nanoplatelets (GNPs)/copper composites has been prepared by conventional powder metallurgy....
Graphene, with its excellent mechanical properties and electrical conductivity, has been considered ...
Successful applications of WCu alloys in high voltage electrical switches require their high strengt...
Graphene or graphene-like carbon nanosheet (GNS) with excellent properties presents great potential ...
Two-dimensional graphene plateletes with unique mechanical, electrical and thermo-physical properti...
Copper matrix composites reinforced with graphene nanoplatelets (GNPs) were prepared via molecularle...
The thesis takes inspiration from the worldwide issues related to the shortage of critical raw mater...
For metal matrix composites (MMCs), introduction of low-dimensional nano-carbon materials (NCMs) int...
The incorporation of low-dimensional nanomaterials into 3D metal matrices are promising to translate...
Currently, seldom studies have paid close attention to the impact of the defects and oxygen-containi...
Copper matrix composites reinforced with carbide-coated graphene nanoplatelets (GNPs) were investiga...
In order to solve problems of significant interfacial reactions and agglomeration in graphene reinfo...
Graphene-embedded Cu matrix composites (GE-CMCs), as one of typical versatile functional composite m...
The strength–ductility trade-off has been a long-standing challenge when designing and fabricating a...
Graphene has been demonstrated as an effective reinforcement for metal matrix composites, due to its...
Graphene nanoplatelets (GNPs)/copper composites has been prepared by conventional powder metallurgy....
Graphene, with its excellent mechanical properties and electrical conductivity, has been considered ...
Successful applications of WCu alloys in high voltage electrical switches require their high strengt...
Graphene or graphene-like carbon nanosheet (GNS) with excellent properties presents great potential ...
Two-dimensional graphene plateletes with unique mechanical, electrical and thermo-physical properti...
Copper matrix composites reinforced with graphene nanoplatelets (GNPs) were prepared via molecularle...
The thesis takes inspiration from the worldwide issues related to the shortage of critical raw mater...