This paper presents the numerical simulation of uniaxial tension and compression tests for negative Poisson’s ratio materials subjected to large strains. Numerical calculations are performed for the determination of the material characteristics of auxetic periodic lattices. The finite element method (FEM) coupled with 2D periodic homogenisation technique is used. The results show the existence of large variations in strain-stress plots, which can be achieved by changing the lattice geometry parameters
The deformation behavior of intersecting ligaments forming variants of the square and rectangular gr...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...
Careful microstructural design can result in materials with counterintuitive effective (macroscale)...
International audienceMaterials exhibiting a negative Poisson's ratio (auxetics) have drawn attentio...
International audienceMaterials presenting a negative Poisson's ratio (auxetics) have drawn attentio...
International audienceIn this work, the influence of a compliant hyperelastic polymeric phase infilt...
International audienceNegative Poisson’s ratio materials, or auxetics, have drawn attention for the ...
Auxetic materials are endowed with a behavior that contradicts common sense, when subjected to an ax...
Recent frontiers in material development are represented by a class of so-called auxetic metamateri...
International audienceMaterials presenting a negative Poisson's ratio (auxetics) have drawn attentio...
Summarization: Materials with negative Poisson's ratio are characterized as auxetic materials. They ...
Prof. Jacques Friedel, an inspirational scientist and a great man. His excellence and clear vision l...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
One of the important mechanical properties of materials is Poisson’s ratio, which is positive for mo...
AbstractMaterialspresentinganegativePoisson'sratio(auxetics)havedrawnattentionforthepasttwodecades,e...
The deformation behavior of intersecting ligaments forming variants of the square and rectangular gr...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...
Careful microstructural design can result in materials with counterintuitive effective (macroscale)...
International audienceMaterials exhibiting a negative Poisson's ratio (auxetics) have drawn attentio...
International audienceMaterials presenting a negative Poisson's ratio (auxetics) have drawn attentio...
International audienceIn this work, the influence of a compliant hyperelastic polymeric phase infilt...
International audienceNegative Poisson’s ratio materials, or auxetics, have drawn attention for the ...
Auxetic materials are endowed with a behavior that contradicts common sense, when subjected to an ax...
Recent frontiers in material development are represented by a class of so-called auxetic metamateri...
International audienceMaterials presenting a negative Poisson's ratio (auxetics) have drawn attentio...
Summarization: Materials with negative Poisson's ratio are characterized as auxetic materials. They ...
Prof. Jacques Friedel, an inspirational scientist and a great man. His excellence and clear vision l...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
One of the important mechanical properties of materials is Poisson’s ratio, which is positive for mo...
AbstractMaterialspresentinganegativePoisson'sratio(auxetics)havedrawnattentionforthepasttwodecades,e...
The deformation behavior of intersecting ligaments forming variants of the square and rectangular gr...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...
Careful microstructural design can result in materials with counterintuitive effective (macroscale)...