AbstractAn anisotropic strain energy function is proposed for tensile loading in graphene that provides a nonlinear, hyperelastic constitutive equation. In the proposed function, the energy depends on the principal invariants of the right Cauchy–Green tensor and the strains in the zigzag and armchair directions. The use of the zigzag and armchair strains gives the model the ability to account for anisotropic behavior at moderate deformations. The constitutive law parameters are determined by a least squares fit to the energies predicted by density functional theory (DFT) calculations, and a good match is obtained to the DFT results for zigzag and armchair graphene sheets with various loading combinations. The law is applied in a continuum c...
The basic building block of many carbon nanostructures like fullerenes, carbon onions or nanotubes i...
In the work, the microscopic mechanisms of uniaxial deformation and fracture of graphene are investi...
We have studied the mechanical properties of suspended graphene membranes using molecular dynamics (...
AbstractAn anisotropic strain energy function is proposed for tensile loading in graphene that provi...
In this paper, we investigate the hyperelastic tensile behaviour of single layer graphene sheets (SL...
The lack of experimental investigations on graphene fostered researchers to focus on its mechanical ...
AbstractIn recent studies, the in-plane elastic properties of graphene have been computed via Densit...
International audienceThis paper presents a simple procedure of obtaining a substitute, homogenized ...
The size-dependent mechanical response of graphene is investigated with an entirely nonlinear molecu...
By combining continuum elasticity theory and tight-binding atomistic simulations, we work out the co...
The unique lattice structure and properties of graphene has drawn tremendous interests recently. By ...
The capacity of popular classical interatomic potentials to describe elastic properties of graphene ...
An isotropic compression of graphene is shown to induce a structural deformation on the basis of Den...
In this paper we present a fully nonlinear stick-and-spring model for graphene subjected to in-plane...
Several aspects of the mechanical behavior of single-layer graphene are modeled from perspectives ra...
The basic building block of many carbon nanostructures like fullerenes, carbon onions or nanotubes i...
In the work, the microscopic mechanisms of uniaxial deformation and fracture of graphene are investi...
We have studied the mechanical properties of suspended graphene membranes using molecular dynamics (...
AbstractAn anisotropic strain energy function is proposed for tensile loading in graphene that provi...
In this paper, we investigate the hyperelastic tensile behaviour of single layer graphene sheets (SL...
The lack of experimental investigations on graphene fostered researchers to focus on its mechanical ...
AbstractIn recent studies, the in-plane elastic properties of graphene have been computed via Densit...
International audienceThis paper presents a simple procedure of obtaining a substitute, homogenized ...
The size-dependent mechanical response of graphene is investigated with an entirely nonlinear molecu...
By combining continuum elasticity theory and tight-binding atomistic simulations, we work out the co...
The unique lattice structure and properties of graphene has drawn tremendous interests recently. By ...
The capacity of popular classical interatomic potentials to describe elastic properties of graphene ...
An isotropic compression of graphene is shown to induce a structural deformation on the basis of Den...
In this paper we present a fully nonlinear stick-and-spring model for graphene subjected to in-plane...
Several aspects of the mechanical behavior of single-layer graphene are modeled from perspectives ra...
The basic building block of many carbon nanostructures like fullerenes, carbon onions or nanotubes i...
In the work, the microscopic mechanisms of uniaxial deformation and fracture of graphene are investi...
We have studied the mechanical properties of suspended graphene membranes using molecular dynamics (...