This paper presents modeling and analysis of coiled carbon nanotube (CCNT) reinforced polymer nanocomposites. A new algorithmic representative volume element (RVE) generation method and an RVE based finite element analysis are proposed to predict the elastic properties of CCNT nanocomposites. The elastic properties of CCNT polymer nanocomposites are studied with respect to their interphase, volume fraction, orientation, number of coils and geometrical variations such as tube diameter, coil diameter and helix angle using the proposed finite element analysis. The results show that the elastic moduli of randomly and unidirectionally dispersed CCNT nanocomposites decrease when the coil tube or the coil diameter increases. In addition, reinforce...
This paper introduces a new method of determining the mechanical properties of carbon nanotube-polym...
Having extremely high stiffness and low specific weight, carbon nanotubes (CNTs) have been known rec...
The superior mechanical properties of carbon nanotubes would make them excellent candidates for the...
Carbon nanotube ( CNT) possesses extraordinary mechanical, thermal, electrical and interfacial prope...
In the paper the prediction of the elastic Young modulus of single-walled carbon nanotubes (CNTs) an...
AbstractCarbon Nanotubes (CNT) due to their excellent mechanical, thermal and electrical properties ...
In the present work, the effective elastic modulus of carbon nanotube (CNT) polymer nanocomposites h...
A novel numerical model able to predict the elastic properties of carbon nanotube/polymer composites...
Remarkable elastic, thermal and physical properties of carbon nanotubes (CNTs) make them most attrac...
International audienceIn the present study, atomistic-based continuum modeling of single-walled carb...
Carbon nanotubes (CNTs) possess extremely high stiffness, strength and resilience, and may provide u...
A small amount of nano dispersed filler leads to an improvement in material properties. Carbon Nanot...
The interaction between coiled carbon nanotubes (CCNT) and the polymer matrix is important in the me...
Due to their high stiffness and strength, as well as their electrical conductivity, carbon nanotubes...
This paper introduces a new method of determining the mechanical properties of carbon nanotube-polym...
This paper introduces a new method of determining the mechanical properties of carbon nanotube-polym...
Having extremely high stiffness and low specific weight, carbon nanotubes (CNTs) have been known rec...
The superior mechanical properties of carbon nanotubes would make them excellent candidates for the...
Carbon nanotube ( CNT) possesses extraordinary mechanical, thermal, electrical and interfacial prope...
In the paper the prediction of the elastic Young modulus of single-walled carbon nanotubes (CNTs) an...
AbstractCarbon Nanotubes (CNT) due to their excellent mechanical, thermal and electrical properties ...
In the present work, the effective elastic modulus of carbon nanotube (CNT) polymer nanocomposites h...
A novel numerical model able to predict the elastic properties of carbon nanotube/polymer composites...
Remarkable elastic, thermal and physical properties of carbon nanotubes (CNTs) make them most attrac...
International audienceIn the present study, atomistic-based continuum modeling of single-walled carb...
Carbon nanotubes (CNTs) possess extremely high stiffness, strength and resilience, and may provide u...
A small amount of nano dispersed filler leads to an improvement in material properties. Carbon Nanot...
The interaction between coiled carbon nanotubes (CCNT) and the polymer matrix is important in the me...
Due to their high stiffness and strength, as well as their electrical conductivity, carbon nanotubes...
This paper introduces a new method of determining the mechanical properties of carbon nanotube-polym...
This paper introduces a new method of determining the mechanical properties of carbon nanotube-polym...
Having extremely high stiffness and low specific weight, carbon nanotubes (CNTs) have been known rec...
The superior mechanical properties of carbon nanotubes would make them excellent candidates for the...