International audienceA continuum approach is proposed to describe micro-inertia effects in closed-cell foams using a micromechanical method. An initially spherical unit-cell was considered and the influence of inertia at the unit-cell level was characterised with the use of a dynamic homogenisation technique. The contribution of micro-inertia appears in the form of a dynamic component of the macroscopic stress. A closed-form expression of the dynamic stress was obtained. The proposed modelling was applied to acoustic and shock wave propagation. In both cases, the influence of micro-inertia was found to be significant. The obtained results are in good agreement with existing data of the literature, provided by micromechanically accurate fin...
A one-dimensional (1D) finite-volume implementation, based on the second-order Godunov method for pr...
An approach for modelling the response of open-cell cellular solids at finite strainsis developed. T...
Cellular materials are characterized by remarkable mechanical properties with light weight. Such mat...
International audienceA continuum approach is proposed to describe micro-inertia effects in closed-c...
Metallic foams have known a keen interest in the last decades. Their ability to undergo very large d...
International audienceA theoretical modelling is proposed to describe the shock response of foam mat...
Les mousses métalliques ont connu un essor important durant les dernières décennies. Leur capacité à...
The objective of this paper is the prediction of the macroscopic behaviour of open-cell foams in ela...
The influence of impulse load applied for different duration on the distribution of normalised dynam...
The influence of impulse load applied for different duration on the distribution of normalised dynam...
International audienceMicro-inertia effects have been included in a micro-mechanical model of void c...
Finite element models of closed-cell foam structures were created using the three-dimensional Vorono...
A continuum model including micro-inertia for heterogeneous materials under high rate loading is pro...
Cellular materials such as metallic and polymeric open-cell foams resemble a labyrinth of interconne...
AbstractOne-dimensional models for compaction of cellular materials exhibiting strain hardening are ...
A one-dimensional (1D) finite-volume implementation, based on the second-order Godunov method for pr...
An approach for modelling the response of open-cell cellular solids at finite strainsis developed. T...
Cellular materials are characterized by remarkable mechanical properties with light weight. Such mat...
International audienceA continuum approach is proposed to describe micro-inertia effects in closed-c...
Metallic foams have known a keen interest in the last decades. Their ability to undergo very large d...
International audienceA theoretical modelling is proposed to describe the shock response of foam mat...
Les mousses métalliques ont connu un essor important durant les dernières décennies. Leur capacité à...
The objective of this paper is the prediction of the macroscopic behaviour of open-cell foams in ela...
The influence of impulse load applied for different duration on the distribution of normalised dynam...
The influence of impulse load applied for different duration on the distribution of normalised dynam...
International audienceMicro-inertia effects have been included in a micro-mechanical model of void c...
Finite element models of closed-cell foam structures were created using the three-dimensional Vorono...
A continuum model including micro-inertia for heterogeneous materials under high rate loading is pro...
Cellular materials such as metallic and polymeric open-cell foams resemble a labyrinth of interconne...
AbstractOne-dimensional models for compaction of cellular materials exhibiting strain hardening are ...
A one-dimensional (1D) finite-volume implementation, based on the second-order Godunov method for pr...
An approach for modelling the response of open-cell cellular solids at finite strainsis developed. T...
Cellular materials are characterized by remarkable mechanical properties with light weight. Such mat...