Compared to conventional materials, materials with a negative Poisson’s ratio are endowed with many specific mechanical features; consequently, there are many potential applications for them. For the last two decades, many efforts have been made on this sort of metamaterial both experimentally and theoretically. This paper provides a brief review of those studies with a focus on mechanical properties and deformation mechanisms of the metamaterials. The latter are explained using a structure of a multi-phase metamaterial system for a more comprehensive understanding and as an inspiration for future works. Additionally, respective manufacturing methods and applications are also summarised
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
Programmable matter is a material whose properties can be programmed to achieve particular shapes or...
The Poisson’s ratio describes an extent of transverse deformation of a material when an axial strain...
Compared to conventional materials, materials with a negative Poisson’s ratio are endowed with many ...
Poisson’s ratio is an important property defining the relationship between lateral and longitudinal ...
Mechanical metamaterials are man-made structures with counterintuitive mechanical properties that or...
A scalable mechanical metamaterial simultaneously displaying negative stiffness and negative Poisson...
The surge of interest in so-called "designer materials" during the last few years together with rece...
The term “mechanical metamaterials” encompasses a wide range of systems whose anomalous mechanical p...
The term “mechanical metamaterials” encompasses a wide range of systems whose anomalous mechanical p...
The surge of interest in so-called "designer materials" during the last few years together with rece...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
Intuitively, materials become both shorter and wider when compressed along their length. Here we sho...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
Programmable matter is a material whose properties can be programmed to achieve particular shapes or...
The Poisson’s ratio describes an extent of transverse deformation of a material when an axial strain...
Compared to conventional materials, materials with a negative Poisson’s ratio are endowed with many ...
Poisson’s ratio is an important property defining the relationship between lateral and longitudinal ...
Mechanical metamaterials are man-made structures with counterintuitive mechanical properties that or...
A scalable mechanical metamaterial simultaneously displaying negative stiffness and negative Poisson...
The surge of interest in so-called "designer materials" during the last few years together with rece...
The term “mechanical metamaterials” encompasses a wide range of systems whose anomalous mechanical p...
The term “mechanical metamaterials” encompasses a wide range of systems whose anomalous mechanical p...
The surge of interest in so-called "designer materials" during the last few years together with rece...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
Intuitively, materials become both shorter and wider when compressed along their length. Here we sho...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
In this paper, we give a review of the state of the art in the study of mechanical metamaterials. Th...
Programmable matter is a material whose properties can be programmed to achieve particular shapes or...
The Poisson’s ratio describes an extent of transverse deformation of a material when an axial strain...