A shear-lag model is developed for carbon nanotube-reinforced polymer composites using a multiscale approach. The main morphological features of the nanocomposites are captured by utilizing a composite cylinder embedded with a capped nanotube as the representative volume element. The molecular structural mechanics is employed to determine the effective Young\u27s modulus of the capped carbon nanotube based on its atomistic structure. The capped nanotube is equivalently represented by an effective (solid) fiber having the same diameter and length but different Young\u27s modulus, which is determined from that of the nanotube under an isostrain condition. The shear-lag analysis is performed in the context of linear elasticity for axisymmetric...
A micromechanical model is applied to examine the tensile properties of composite materials filled w...
Due to the high stiffness and strength, as well as their ability to act as conductors, carbon nanotu...
The effect of carbon nanotube (CNT) integration in polymer matrixes (two-phase) and fibre reinforced...
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...
Nanotube-reinforced polymers offer significant potential improvements over the pure polymer with reg...
In this study, a technique is presented for developing constitutive models for polymer composite sys...
A novel numerical model able to predict the elastic properties of carbon nanotube/polymer composites...
Owing to their exceptional mechanical and physical properties, carbon nanotubes seem to hold a great...
Having extremely high stiffness and low specific weight, carbon nanotubes (CNTs) have been known rec...
Substantial improvements in the mechanical behavior of polymers have been attained through the addit...
One way to take advantage of the marvelous properties of the carbon nanotubes consists in incorporat...
In the paper the prediction of the elastic Young modulus of single-walled carbon nanotubes (CNTs) an...
Carbon nanotubes (CNTs) possess extremely high stiffness, strength and resilience, and may provide u...
In this study, a technique has been proposed for developing constitutive models for polymer composit...
A micromechanical model is applied to examine the tensile properties of composite materials filled w...
Due to the high stiffness and strength, as well as their ability to act as conductors, carbon nanotu...
The effect of carbon nanotube (CNT) integration in polymer matrixes (two-phase) and fibre reinforced...
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...
Nanotube-reinforced polymers offer significant potential improvements over the pure polymer with reg...
In this study, a technique is presented for developing constitutive models for polymer composite sys...
A novel numerical model able to predict the elastic properties of carbon nanotube/polymer composites...
Owing to their exceptional mechanical and physical properties, carbon nanotubes seem to hold a great...
Having extremely high stiffness and low specific weight, carbon nanotubes (CNTs) have been known rec...
Substantial improvements in the mechanical behavior of polymers have been attained through the addit...
One way to take advantage of the marvelous properties of the carbon nanotubes consists in incorporat...
In the paper the prediction of the elastic Young modulus of single-walled carbon nanotubes (CNTs) an...
Carbon nanotubes (CNTs) possess extremely high stiffness, strength and resilience, and may provide u...
In this study, a technique has been proposed for developing constitutive models for polymer composit...
A micromechanical model is applied to examine the tensile properties of composite materials filled w...
Due to the high stiffness and strength, as well as their ability to act as conductors, carbon nanotu...
The effect of carbon nanotube (CNT) integration in polymer matrixes (two-phase) and fibre reinforced...