Elastic behavior of carbon nanocoils is investigated through molecular dynamics simulations. In particular, spring constants of various nanocoils are derived. To do so, first a geometric model is prepared with the aid of finite element mesh generator. Then applying AIREBO potential, the model is simulated under tensile loading. Using the obtained deformation data, the spring constant is calculated. In order to study the effect of structural parameters, change of elastic properties with helix diameter as well as tube diameter is examined. The results are compared to those obtained via other methods reported in literature
The primary motivation of the current research focuses on the ability to create simplified models th...
CNTs are cylindrical nanostructures having a range of potential applications in nanotechnology. Ther...
An effective continuum/finite element (FE) approach for modeling the structure and the deformation o...
An individual carbon nanocoil was clamped between two AFM cantilevers and loaded in tension to a max...
Abstract A structural model of carbon nanocoils (CNCs) on the basis of carbon nanotubes (CNTs) was p...
Abstract: A systematic numerical and theoretical analysis is carried out to study the radial elastic...
In this paper, two different approaches for modeling the behaviour of carbon nanotubes are presented...
AbstractIn this paper, two different approaches for modeling the behaviour of carbon nanotubes are p...
A thorough understanding on the mechanical properties of carbon nanotube (CNT) is essential in exten...
Results of molecular-mechanics simulations of axial and torsional deformations of a single wall carb...
Soon after the discovery of carbon nanotubes, it was realized that the theoretically predicted mecha...
AbstractA thorough understanding on the mechanical properties of carbon nanotube (CNT) is essential ...
Various mechanical properties of single-walled carbon nanotubes (SWCNT) and double-walled carbon nan...
An effective continuum/finite element (FE) approach for modeling the structure and the deformation o...
The aim of the present paper is the theoretical investigation of the mechanical properties of carbon...
The primary motivation of the current research focuses on the ability to create simplified models th...
CNTs are cylindrical nanostructures having a range of potential applications in nanotechnology. Ther...
An effective continuum/finite element (FE) approach for modeling the structure and the deformation o...
An individual carbon nanocoil was clamped between two AFM cantilevers and loaded in tension to a max...
Abstract A structural model of carbon nanocoils (CNCs) on the basis of carbon nanotubes (CNTs) was p...
Abstract: A systematic numerical and theoretical analysis is carried out to study the radial elastic...
In this paper, two different approaches for modeling the behaviour of carbon nanotubes are presented...
AbstractIn this paper, two different approaches for modeling the behaviour of carbon nanotubes are p...
A thorough understanding on the mechanical properties of carbon nanotube (CNT) is essential in exten...
Results of molecular-mechanics simulations of axial and torsional deformations of a single wall carb...
Soon after the discovery of carbon nanotubes, it was realized that the theoretically predicted mecha...
AbstractA thorough understanding on the mechanical properties of carbon nanotube (CNT) is essential ...
Various mechanical properties of single-walled carbon nanotubes (SWCNT) and double-walled carbon nan...
An effective continuum/finite element (FE) approach for modeling the structure and the deformation o...
The aim of the present paper is the theoretical investigation of the mechanical properties of carbon...
The primary motivation of the current research focuses on the ability to create simplified models th...
CNTs are cylindrical nanostructures having a range of potential applications in nanotechnology. Ther...
An effective continuum/finite element (FE) approach for modeling the structure and the deformation o...