Multi-walled carbon nanotubes (CNTs) were grown in-situ on the surface of carbon fibers (CFs) at low pressure by a vertical chemical vapor deposition (CVD) reactor. The surface of CFs was modified by electrochemical anodization, and the growth morphology and other properties of CNTs were analyzed by detailed techniques. The CNT-grown CF reinforced unidirectional hierarchical composite material based on the epoxy resin was prepared. The interlaminar shear strength (ILSS) indicates that the maximum strength of the composites reaches 108 MPa after the CNTs are grown on the CF surface with a 25.2% increase than that of the desized CF composites. The fracture surface of composites was observed by scanning electron microscopy (SEM) to further und...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Carbon nanotubes are the most promising reinforcement for high performance composites. Multiwall car...
Hierarchical structuring of the reinforcement such as nano-structural add-ons on micron-scale substr...
Growing carbon nanotubes (CNT) on the surface of high performance carbon fibers (CF) offers a means ...
The characteristics of interface between fiber reinforcement and matrix have a strong influence on t...
Multiwall carbon nanotubes (CNTs) e carbon fibers (CFs) hybrid materials were produced by directly g...
Carbon nanotubes and nanofibers were directly grown on carbon fiber substrate by catalytic decomposi...
The interface between carbon fibers (CFs) and the resin matrix in traditional high performance compo...
Multiwall carbon nanotubes (CNTs) e carbon fibers (CFs) hybrid materials were produced by directly g...
Carbon nanotubes (CNT) and short carbon fibers were incorporated into an epoxy matrix to fabricate a...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
In this work, we show that the interfacial adhesion between carbon fibers (CFs) and epoxy matrix in ...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Carbon fibers were uniformly coated with carbon nanotubes by catalytic decomposition of acetylene us...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Carbon nanotubes are the most promising reinforcement for high performance composites. Multiwall car...
Hierarchical structuring of the reinforcement such as nano-structural add-ons on micron-scale substr...
Growing carbon nanotubes (CNT) on the surface of high performance carbon fibers (CF) offers a means ...
The characteristics of interface between fiber reinforcement and matrix have a strong influence on t...
Multiwall carbon nanotubes (CNTs) e carbon fibers (CFs) hybrid materials were produced by directly g...
Carbon nanotubes and nanofibers were directly grown on carbon fiber substrate by catalytic decomposi...
The interface between carbon fibers (CFs) and the resin matrix in traditional high performance compo...
Multiwall carbon nanotubes (CNTs) e carbon fibers (CFs) hybrid materials were produced by directly g...
Carbon nanotubes (CNT) and short carbon fibers were incorporated into an epoxy matrix to fabricate a...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
In this work, we show that the interfacial adhesion between carbon fibers (CFs) and epoxy matrix in ...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Carbon fibers were uniformly coated with carbon nanotubes by catalytic decomposition of acetylene us...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Hierarchically structured hybrid composites are ideal engineered materials to carry loads and stress...
Carbon nanotubes are the most promising reinforcement for high performance composites. Multiwall car...