Negative Poisson’s ratio, or auxetic, materials present the possibility of designing structures and components with tailored or enhanced mechanical properties. This thesis explores the phenomenon of auxetic behaviour in cubic crystals using classical and quantum modelling techniques and assesses the validity of these techniques when predicting auxetic behaviour in cubic elemental metals. These techniques are then used to explore the mechanism of this behaviour. The findings of the atomistic modelling are then used as a template to create networks of bending beams with tailored Poisson’s ratio behaviour.EThOS - Electronic Theses Online ServiceGBUnited Kingdo
Negative Poisson’s ratio materials, or auxetics, have drawn attention for the past 30 years. The aux...
Auxetic lattices exhibit a negative Poisson’s ratio and excellent energy absorption capability. Here...
Elastic instabilities are usually deleterious and needed to prevent. In this study, we use elastic i...
Negative Poisson’s ratio, or auxetic, materials present the possibility of designing structures and ...
AbstractIn this work we show that a structure consisting of a network of bending beams can exhibit a...
AbstractIn this work we show that a structure consisting of a network of bending beams can exhibit a...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
This paper reports the analysis of patterns and mechanisms that form the characteristic surfaces of ...
Materials with a negative Poisson's ratio (auxetics) are counter intuitive because their mechan...
Auxetics comprise a rare family of materials that manifest negative Poisson's ratio, which causes an...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
International audienceThe unique physical properties of auxetic compounds make them very attractive ...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
Negative Poisson’s ratio materials, or auxetics, have drawn attention for the past 30 years. The aux...
Auxetic lattices exhibit a negative Poisson’s ratio and excellent energy absorption capability. Here...
Elastic instabilities are usually deleterious and needed to prevent. In this study, we use elastic i...
Negative Poisson’s ratio, or auxetic, materials present the possibility of designing structures and ...
AbstractIn this work we show that a structure consisting of a network of bending beams can exhibit a...
AbstractIn this work we show that a structure consisting of a network of bending beams can exhibit a...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
This paper reports the analysis of patterns and mechanisms that form the characteristic surfaces of ...
Materials with a negative Poisson's ratio (auxetics) are counter intuitive because their mechan...
Auxetics comprise a rare family of materials that manifest negative Poisson's ratio, which causes an...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
International audienceThe unique physical properties of auxetic compounds make them very attractive ...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
Negative Poisson’s ratio materials, or auxetics, have drawn attention for the past 30 years. The aux...
Auxetic lattices exhibit a negative Poisson’s ratio and excellent energy absorption capability. Here...
Elastic instabilities are usually deleterious and needed to prevent. In this study, we use elastic i...