This article reviews recent literature on hierarchical thermoplastic-based composites that simultaneously incorporate carbon nanotubes (CNTs) and conventional microscale fibers, and discusses the structure?property relationships of the resulting hybrids. The mixing of multiple and multiscale constituents enables the preparation of materials with new or improved properties due to synergistic effects. By exploiting the outstanding mechanical, thermal and electrical properties of CNTs, a new generation of multifunctional high-performance composites suitable for a wide variety of applications can be developed
Carbon nanotubes are known as one of the strongest materials in nature and since their discovery; th...
Carbon nanotube integrated textile structural composites are one of the demanded materials especiall...
International audiencePolymer composites with enhanced mechanical and functional properties are high...
This article reviews recent literature on hierarchical thermoplastic-based composites that simultane...
Hierarchical design down to the nanoscale has become possible in structural composite materials with...
Hierarchical advanced composite structures comprised of both nano- and micro-scale fibers are curren...
Carbon nanotubes have unprecedented mechanical properties as defect-free nanoscale building blocks, ...
A wet powder impregnation route to manufacture carbon fibre reinforced thermoplastic composites was ...
The axial mechanical, electrical and thermal properties of carbon nanotubes (CNTs) can be exploited ...
Multilevel hierarchical structures built up from nanoscale to macroscale are common in nature, but t...
The effect of carbon nanotube (CNT) integration in polymer matrixes (two-phase) and fibre reinforced...
The incorporation of carbon nanotubes (CNTs) into the matrix of conventional fibre reinforced compos...
Developments in the synthesis and scalable manufacturing of carbon nanomaterials like carbon nanotub...
We envision the next generation composite materials as hierarchically structured down to the nanosca...
Carbon nanotubes are one of the most versatile nanomaterials currently used to modify the properties...
Carbon nanotubes are known as one of the strongest materials in nature and since their discovery; th...
Carbon nanotube integrated textile structural composites are one of the demanded materials especiall...
International audiencePolymer composites with enhanced mechanical and functional properties are high...
This article reviews recent literature on hierarchical thermoplastic-based composites that simultane...
Hierarchical design down to the nanoscale has become possible in structural composite materials with...
Hierarchical advanced composite structures comprised of both nano- and micro-scale fibers are curren...
Carbon nanotubes have unprecedented mechanical properties as defect-free nanoscale building blocks, ...
A wet powder impregnation route to manufacture carbon fibre reinforced thermoplastic composites was ...
The axial mechanical, electrical and thermal properties of carbon nanotubes (CNTs) can be exploited ...
Multilevel hierarchical structures built up from nanoscale to macroscale are common in nature, but t...
The effect of carbon nanotube (CNT) integration in polymer matrixes (two-phase) and fibre reinforced...
The incorporation of carbon nanotubes (CNTs) into the matrix of conventional fibre reinforced compos...
Developments in the synthesis and scalable manufacturing of carbon nanomaterials like carbon nanotub...
We envision the next generation composite materials as hierarchically structured down to the nanosca...
Carbon nanotubes are one of the most versatile nanomaterials currently used to modify the properties...
Carbon nanotubes are known as one of the strongest materials in nature and since their discovery; th...
Carbon nanotube integrated textile structural composites are one of the demanded materials especiall...
International audiencePolymer composites with enhanced mechanical and functional properties are high...