International audienceGraphene sheets can be considered as lattices consisting of atoms and of interatomic bonds. Their bond lengths are smaller than one nanometer. Simple models describe their behavior by an energy that takes into account both the interatomic lengths and the angles between bonds. We make use of their periodic structure and we construct an equivalent macroscopic model by means of a discrete homogenization technique. Large three-dimensional deformations of graphene sheets are thus governed by a membrane model whose constitutive law is implicit. By linearizing around a prestressed configuration, we obtain linear membrane models that are valid for small displacements and whose constitutive laws are explicit. When restricting t...
In this paper, we provide the quantification of the linear and non-linear elastic mechanical propert...
We have studied the mechanical properties of suspended graphene membranes using molecular dynamics (...
AbstractA theoretical framework for describing the kinematics and energetics of hexagonal atomic lat...
International audienceGraphene sheets can be considered as lattices consisting of atoms and of inter...
International audienceThis paper presents a simple procedure of obtaining a substitute, homogenized ...
A continuum model for a graphene sheet undergoing infinitesimal in\u2013plane deformations is derive...
In the present contribution we address the modeling of graphene membranes - the thinnest membrane st...
The paper deals with the modeling of thin, monolayer graphene membranes, which have significant elec...
The size-dependent mechanical response of graphene is investigated with an entirely nonlinear molecu...
Several nanomechanics approaches based on common two or three-body potentials are compared. Numerica...
We deduce a non-linear continuum model of graphene for the case of finite out-of-plane displacements...
We deduce a non-linear continuum model of graphene for the case of finite out-of-plane displacements...
The present contribution deals with the modeling of thin graphene membranes. Such membranes have a s...
A finite-deformation crystal-elasticity membrane model for Transition Metal Dichalcogenide (TMD) mon...
Several nanomechanics formulations based on common two and three-body bonding potentials are compare...
In this paper, we provide the quantification of the linear and non-linear elastic mechanical propert...
We have studied the mechanical properties of suspended graphene membranes using molecular dynamics (...
AbstractA theoretical framework for describing the kinematics and energetics of hexagonal atomic lat...
International audienceGraphene sheets can be considered as lattices consisting of atoms and of inter...
International audienceThis paper presents a simple procedure of obtaining a substitute, homogenized ...
A continuum model for a graphene sheet undergoing infinitesimal in\u2013plane deformations is derive...
In the present contribution we address the modeling of graphene membranes - the thinnest membrane st...
The paper deals with the modeling of thin, monolayer graphene membranes, which have significant elec...
The size-dependent mechanical response of graphene is investigated with an entirely nonlinear molecu...
Several nanomechanics approaches based on common two or three-body potentials are compared. Numerica...
We deduce a non-linear continuum model of graphene for the case of finite out-of-plane displacements...
We deduce a non-linear continuum model of graphene for the case of finite out-of-plane displacements...
The present contribution deals with the modeling of thin graphene membranes. Such membranes have a s...
A finite-deformation crystal-elasticity membrane model for Transition Metal Dichalcogenide (TMD) mon...
Several nanomechanics formulations based on common two and three-body bonding potentials are compare...
In this paper, we provide the quantification of the linear and non-linear elastic mechanical propert...
We have studied the mechanical properties of suspended graphene membranes using molecular dynamics (...
AbstractA theoretical framework for describing the kinematics and energetics of hexagonal atomic lat...