International audienceThe present paper aims at investigating the homogenisation of cellular materials in view of the modelling of large but finite cellular structures. Indeed, computation costs associated with the complete modelling of such structures can be rapidly prohibitive if industrial applications are considered. The use of a homogeneous equivalent medium (HEM) for these cellular materials can be an efficient approach to address this issue, but it requires the calibration of relevant homogeneous equivalent laws (HELs). Here, the considered cellular materials are tube stackings. Various uni-axial and multi-axial loading cases have been simulated, through the finite element method, on representative volume elements of such periodic st...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
Lattice materials are artificial materials made of repeating unit-cells. The internal architecture o...
Cellular solids form the basis of many biological and engineering structures. Most models use the re...
International audienceThe present paper aims at investigating the homogenisation of cellular materia...
Cellular materials have excellent specific properties, which make them attractive for aeronautical a...
Grâce à leurs bonnes propriétés mécaniques spécifiques, les matériaux cellulaires architecturés prés...
Structures made of tubes, stacked in square or hexagonal patterns, have been considered here as mode...
The aim of this work is to develop an efficient multi–scale finite element framework to capture the ...
International audienceThe homogenization theory in linear elasticity is applied to a periodic array ...
AbstractIn this work we propose to study the behavior of cellular materials using a second-order mul...
This work aims at investigating the experimental characterisation and the modelling of the mechanica...
In the last few decades, the popularity of composite and cellular materials has rapidly increased th...
A generalized strain energy-based homogenization method for 2-D and 3-D cellular materials with and ...
peer reviewedAlthough "classical" multi-scale methods can capture the behaviour of cellular, includi...
International audienceThis work proposes a theoretical/numerical framework for the topology optimisa...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
Lattice materials are artificial materials made of repeating unit-cells. The internal architecture o...
Cellular solids form the basis of many biological and engineering structures. Most models use the re...
International audienceThe present paper aims at investigating the homogenisation of cellular materia...
Cellular materials have excellent specific properties, which make them attractive for aeronautical a...
Grâce à leurs bonnes propriétés mécaniques spécifiques, les matériaux cellulaires architecturés prés...
Structures made of tubes, stacked in square or hexagonal patterns, have been considered here as mode...
The aim of this work is to develop an efficient multi–scale finite element framework to capture the ...
International audienceThe homogenization theory in linear elasticity is applied to a periodic array ...
AbstractIn this work we propose to study the behavior of cellular materials using a second-order mul...
This work aims at investigating the experimental characterisation and the modelling of the mechanica...
In the last few decades, the popularity of composite and cellular materials has rapidly increased th...
A generalized strain energy-based homogenization method for 2-D and 3-D cellular materials with and ...
peer reviewedAlthough "classical" multi-scale methods can capture the behaviour of cellular, includi...
International audienceThis work proposes a theoretical/numerical framework for the topology optimisa...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
Lattice materials are artificial materials made of repeating unit-cells. The internal architecture o...
Cellular solids form the basis of many biological and engineering structures. Most models use the re...