Perforated systems constitute one of the most important classes of mechanical metamaterials. In this work, two types of “I”-shaped slit perforation patterns are proposed which may be used to design perforated systems that mimic the deformation mechanisms of a variety of re-entrant and anti-tetrachiral honeycomb systems. Using finite element analysis, it is shown how these systems have the potential to exhibit a large spectrum of negative Poisson's ratios, ranging from extremely negative to zero, which are retained over a wide tensile strain range. A detailed analysis of the deformation behavior of these systems is also presented along with a comparison of the changes in overall expansion and Poisson's ratios of both systems observed upon lo...
In the present paper a two dimensional plate, made by structural straight elements and showing an au...
The surge of interest in so-called "designer materials" during the last few years together with rece...
The surge of interest in so-called "designer materials" during the last few years together with rece...
Mechanical metamaterials are systems which derive their mechanical properties from their structure r...
Auxetic metamaterials have generated a great deal of interest in recent years. In this letter, a nov...
The highly symmetric hexachiral honeycomb with an isotropic Poisson's ratio of -1 is one of the earl...
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...
Auxetic materials are increasingly used in the field of sports, defense, bio-medicine, and acoustic-...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Materials or structures that contract in the transverse direction under uniaxial compression, or exp...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
Two-dimensional metamaterials with patterns of perforations producing auxetic effects can exhibit va...
Two-dimensional metamaterials with patterns of perforations producing auxetic effects can exhibit va...
In the present paper a two dimensional plate, made by structural straight elements and showing an au...
The surge of interest in so-called "designer materials" during the last few years together with rece...
The surge of interest in so-called "designer materials" during the last few years together with rece...
Mechanical metamaterials are systems which derive their mechanical properties from their structure r...
Auxetic metamaterials have generated a great deal of interest in recent years. In this letter, a nov...
The highly symmetric hexachiral honeycomb with an isotropic Poisson's ratio of -1 is one of the earl...
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...
Auxetic materials are increasingly used in the field of sports, defense, bio-medicine, and acoustic-...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Materials or structures that contract in the transverse direction under uniaxial compression, or exp...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
Two-dimensional metamaterials with patterns of perforations producing auxetic effects can exhibit va...
Two-dimensional metamaterials with patterns of perforations producing auxetic effects can exhibit va...
In the present paper a two dimensional plate, made by structural straight elements and showing an au...
The surge of interest in so-called "designer materials" during the last few years together with rece...
The surge of interest in so-called "designer materials" during the last few years together with rece...