This paper presents a hyperelastic finite element-based lattice approach for the description of post-buckling response in single wall carbon nanotubes (SWCNTs). A one-term incompressible Ogden-type hyperelastic model is adopted to describe the mechanical response of SWCNTs under axial compression. Numerical experiments are carried out and the results are compared to atomistic simulations, demonstrating the predictive capabilities of the present model in capturing post-buckling behaviour and the main deformation mechanisms under large compressive deformations
The aim of the present work is to analyze free flexural vibration and buckling of single-walled carb...
The aim of the present work is to analyze free flexural vibration and buckling of single-walled carb...
Structure evolution and mechanical response of the carbon nanotube (CNT) bundle under lateral biaxia...
This paper presents a hyperelastic finite element-based lattice approach for the description of post...
This paper proposes a hyperelastic finite element-based lattice approach for the description of buck...
AbstractThis paper presents a hyperelastic finite element-based lattice approach for the description...
This paper investigates the hyperelastic behaviour of single wall carbon nanotubes (SWCNTs) by means...
We investigate the behaviour of a single-walled Carbon Nanotube under axial compressive line load ap...
The buckling characteristics of several curved forms of single walled carbon nanotubes (SWCNTs) were...
Abstract: In this work, single wall carbon nan-otubes (SWNTs) are shown to obey a hyperelastic const...
This paper presents an assessment of continuum mechanics (beam and cylindrical shell) models in the ...
An effective finite-element (FE) approach for modeling the structure and the deformation of single-w...
In this paper, the post-critical behavior and buckling modes of single-walled carbon nanotubes are a...
We investigate a single walled Carbon Nanotube under an axially directed compressive line loading ap...
A good understanding of the mechanical properties carbon nanotubes is essential to their application...
The aim of the present work is to analyze free flexural vibration and buckling of single-walled carb...
The aim of the present work is to analyze free flexural vibration and buckling of single-walled carb...
Structure evolution and mechanical response of the carbon nanotube (CNT) bundle under lateral biaxia...
This paper presents a hyperelastic finite element-based lattice approach for the description of post...
This paper proposes a hyperelastic finite element-based lattice approach for the description of buck...
AbstractThis paper presents a hyperelastic finite element-based lattice approach for the description...
This paper investigates the hyperelastic behaviour of single wall carbon nanotubes (SWCNTs) by means...
We investigate the behaviour of a single-walled Carbon Nanotube under axial compressive line load ap...
The buckling characteristics of several curved forms of single walled carbon nanotubes (SWCNTs) were...
Abstract: In this work, single wall carbon nan-otubes (SWNTs) are shown to obey a hyperelastic const...
This paper presents an assessment of continuum mechanics (beam and cylindrical shell) models in the ...
An effective finite-element (FE) approach for modeling the structure and the deformation of single-w...
In this paper, the post-critical behavior and buckling modes of single-walled carbon nanotubes are a...
We investigate a single walled Carbon Nanotube under an axially directed compressive line loading ap...
A good understanding of the mechanical properties carbon nanotubes is essential to their application...
The aim of the present work is to analyze free flexural vibration and buckling of single-walled carb...
The aim of the present work is to analyze free flexural vibration and buckling of single-walled carb...
Structure evolution and mechanical response of the carbon nanotube (CNT) bundle under lateral biaxia...