International audienceStrong reinforcing effects are observed when multiwall carbon nanotubes are incorporated in a styrene-butadiene copolymer. The good level of dispersion of carbon nanotubes in the host matrix that allows to take advantage of their high aspect ratio as well as their orienting capability under uniaxial extension, appear to be the main parameters for mechanical reinforcement. Atomic force microscopy carried out in the unstretched and stretched states has been shown to bring important insights for the understanding of the mechanical properties of the composites
Two ethylene-1-butene thermoplastic elastomer copolymers were melt mixed with different nanometric f...
The high mechanical properties, the stiffness-to-weight, and strength-to-weight make the carbon nano...
Carbon nanotubes (CNTs) are under intense investigation in materials science owing to their potentia...
AbstractNanostructured materials gained great importance in the past decade on account of their wide...
Since the development of carbon nanotubes (CNTs) in 1991, they have received much attention with imp...
Multi-walled carbon nanotubes (MW-CNT) inside a polyamide-6 (PA6)–MW-CNT composite were visualized b...
Next generation polymer composites that utilize the high electrical conductivity and tensile strengt...
The current study focuses on giving a basic understanding of tubular graphene sheets or carbon nanot...
In our daily lives, we see and make use of elastomeric materials and there are many different elasto...
Tapping-mode atomic force microscopy was used to study the radial deformability of a multiwalled car...
331-337Carbon nanotubes (CNTs ) are considered to be one of the novel reinforcement for developing ...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
Owing to their exceptional mechanical and physical properties, carbon nanotubes seem to hold a great...
Carbon nanostructures including carbon black, carbon nanotubes, graphite or graphene have attracted ...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
Two ethylene-1-butene thermoplastic elastomer copolymers were melt mixed with different nanometric f...
The high mechanical properties, the stiffness-to-weight, and strength-to-weight make the carbon nano...
Carbon nanotubes (CNTs) are under intense investigation in materials science owing to their potentia...
AbstractNanostructured materials gained great importance in the past decade on account of their wide...
Since the development of carbon nanotubes (CNTs) in 1991, they have received much attention with imp...
Multi-walled carbon nanotubes (MW-CNT) inside a polyamide-6 (PA6)–MW-CNT composite were visualized b...
Next generation polymer composites that utilize the high electrical conductivity and tensile strengt...
The current study focuses on giving a basic understanding of tubular graphene sheets or carbon nanot...
In our daily lives, we see and make use of elastomeric materials and there are many different elasto...
Tapping-mode atomic force microscopy was used to study the radial deformability of a multiwalled car...
331-337Carbon nanotubes (CNTs ) are considered to be one of the novel reinforcement for developing ...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
Owing to their exceptional mechanical and physical properties, carbon nanotubes seem to hold a great...
Carbon nanostructures including carbon black, carbon nanotubes, graphite or graphene have attracted ...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
Two ethylene-1-butene thermoplastic elastomer copolymers were melt mixed with different nanometric f...
The high mechanical properties, the stiffness-to-weight, and strength-to-weight make the carbon nano...
Carbon nanotubes (CNTs) are under intense investigation in materials science owing to their potentia...