Small but strong carbon nanotubes (CNTs) are fillers of choice for composite reinforcement owing to their extraordinary modulus and strength. However, the mechanical properties of the nanocomposites are still much below those for mechanical parameters of individual nanotubes. The gap between the expectation and experimental results arises not only from imperfect dispersion and poor load transfer but also from the unavailability of strong polymers that can be effectively utilized within the composites of nanotubes. Aramid nanofibers (ANFs) with analogous morphological features to nanotubes represent a potential choice to complement nanotubes given their intrinsic high mechanical performance and the dispersible nature, which enables solvent-b...
Since the last decade, research activities in the area of nano-materials have been increased dramati...
Carbon nanotubes (CNTs) are an order of magnitude stronger than any other current engineering fiber....
Aramid fiber-phenolic matrix composite laminates reinforced with carbon nanotubes (CNT) were develop...
Elastomers such as polyurethanes usually possess low stiffness, and the addition of traditional fill...
The development of nanoscale reinforcements that can be used to improve the mechanical properties of...
Nanoscale polymeric fibers are expected to bring about exceptional mechanical and optical properties...
High-performance fibers are promising materials in the impact protection field but fabricating fiber...
Nanoscale polymeric fibers are expected to bring about exceptional mechanical and optical properties...
Carbon nanotubes have unprecedented mechanical properties as defect-free nanoscale building blocks, ...
In recent decades, polymer-carbon nanotube (CNTs) composite materials have drawn much attention for ...
There is currently a well-timed opportunity to create intensely improved structural materials to be ...
Multiwalled carbon nanotubes with their superb mechanical properties are an unique filler material f...
Over the past five years there has been much excitement about the development of nanotubes and nanof...
The carbon nanotubes possess many unique mechanical and electrical properties, and have been appreci...
High performance nanocomposites require well dispersion and high alignment of the nanometer-sized co...
Since the last decade, research activities in the area of nano-materials have been increased dramati...
Carbon nanotubes (CNTs) are an order of magnitude stronger than any other current engineering fiber....
Aramid fiber-phenolic matrix composite laminates reinforced with carbon nanotubes (CNT) were develop...
Elastomers such as polyurethanes usually possess low stiffness, and the addition of traditional fill...
The development of nanoscale reinforcements that can be used to improve the mechanical properties of...
Nanoscale polymeric fibers are expected to bring about exceptional mechanical and optical properties...
High-performance fibers are promising materials in the impact protection field but fabricating fiber...
Nanoscale polymeric fibers are expected to bring about exceptional mechanical and optical properties...
Carbon nanotubes have unprecedented mechanical properties as defect-free nanoscale building blocks, ...
In recent decades, polymer-carbon nanotube (CNTs) composite materials have drawn much attention for ...
There is currently a well-timed opportunity to create intensely improved structural materials to be ...
Multiwalled carbon nanotubes with their superb mechanical properties are an unique filler material f...
Over the past five years there has been much excitement about the development of nanotubes and nanof...
The carbon nanotubes possess many unique mechanical and electrical properties, and have been appreci...
High performance nanocomposites require well dispersion and high alignment of the nanometer-sized co...
Since the last decade, research activities in the area of nano-materials have been increased dramati...
Carbon nanotubes (CNTs) are an order of magnitude stronger than any other current engineering fiber....
Aramid fiber-phenolic matrix composite laminates reinforced with carbon nanotubes (CNT) were develop...