There is an increasing demand for high performance composites with enhanced mechanical and electrical properties. Carbon nanofibres offer a promising solution but their effectiveness has been limited by difficulty in achieving directional alignment. Here we report the use of an alternating current (AC) electric field to align carbon nanofibres in an epoxy. During the cure process of an epoxy resin, carbon nanofibres (CNFs) are observed to rotate and align with the applied electric field, forming a chain-like structure. The fracture energies of the resultant epoxy nanocomposites containing different concentrations of CNFs (up to 1.6wt%) are measured using double cantilever beam specimens. The results show that the addition of 1.6wt% of align...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
Novel magnetite-carbon nanofiber hybrids (denoted by "Fe3O4@CNFs") have been developed by ...
AbstractThere is an increasing demand for high performance composites with enhanced mechanical and e...
There is an increasing demand for high performance composites with enhanced mechanical and electrica...
AbstractThere is an increasing demand for high performance composites with enhanced mechanical and e...
There is an increasing demand for high performance composites with enhanced mechanical and electrica...
This paper presents systematic studies on aligning carbon nanofillers in epoxy by external fields, e...
The present paper compares improvements to the fracture energy and electrical conductivity of epoxy ...
The present paper compares improvements to the fracture energy and electrical conductivity of epoxy ...
The present paper demonstrates that multi-scale fillers such as carbon nanofibres (CNFs) and short c...
AbstractNovel magnetite-carbon nanofiber hybrids (denoted by “Fe3O4@CNFs”) have been developed by co...
Advanced fibre-reinforced polymer composites offer numerous advantages over metallic alloys, includi...
The present paper demonstrates that multi-scale fillers such as carbon nanofibres (CNFs) and short c...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
Novel magnetite-carbon nanofiber hybrids (denoted by "Fe3O4@CNFs") have been developed by ...
AbstractThere is an increasing demand for high performance composites with enhanced mechanical and e...
There is an increasing demand for high performance composites with enhanced mechanical and electrica...
AbstractThere is an increasing demand for high performance composites with enhanced mechanical and e...
There is an increasing demand for high performance composites with enhanced mechanical and electrica...
This paper presents systematic studies on aligning carbon nanofillers in epoxy by external fields, e...
The present paper compares improvements to the fracture energy and electrical conductivity of epoxy ...
The present paper compares improvements to the fracture energy and electrical conductivity of epoxy ...
The present paper demonstrates that multi-scale fillers such as carbon nanofibres (CNFs) and short c...
AbstractNovel magnetite-carbon nanofiber hybrids (denoted by “Fe3O4@CNFs”) have been developed by co...
Advanced fibre-reinforced polymer composites offer numerous advantages over metallic alloys, includi...
The present paper demonstrates that multi-scale fillers such as carbon nanofibres (CNFs) and short c...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
An electric field is used to align carbon nanofibres (CNFs) in the matrix of a glass-fibre reinforce...
Novel magnetite-carbon nanofiber hybrids (denoted by "Fe3O4@CNFs") have been developed by ...