We present in this work the manufacturing, modeling, and testing of dome-shaped cellular structures with auxetic (negative Poisson's ratio) behavior. The auxetic configurations allow the creation of structures with synclastic (i.e., dome-shaped) curvatures, and this feature is used to evaluate the performance of cellular metamaterials under quasi-static indentation conditions. We consider here different cellular geometries (re-entrant, arrow-head, tri-chiral, hexagonal) and the implications of their manufacturing using 3D printing techniques with PLA material. The dome-shaped configurations are modeled using full-scale non-linear quasi-static and explicit dynamic FE models that represent both the geometry and approximate constitutive models...
The auxetic cellular structures with two different chiral geometries (tetrachiral and hexachiral) we...
Auxetic structures have evolved beyond conventional cellular structures by offering unique attribute...
Auxetic Structures are a class of meta-materials uniquely characterised by their Negative Poisson’s ...
We present in this work the manufacturing, modeling, and testing of dome-shaped cellular structures ...
Recent frontiers in material development are represented by a class of so-called auxetic metamateri...
Auxetic structures exhibit negative Poissons ratios in one or more directions. When stretched, they ...
In recent years, the rapid development of digital fabrication technology has substantially boosted t...
Auxetic lattices exhibit a negative Poisson’s ratio and excellent energy absorption capability. Here...
The paper investigates the potential of auxetics in architectural applications by means of computati...
Auxetic metamaterials have enhanced indentation and penetration resistance due to their high shear s...
Auxetic behavior implies a negative Poisson’s ratio whereby the specimen contracts instead of expand...
In the present paper a two dimensional plate, made by structural straight elements and showing an au...
Auxetic materials with negative Poisson\u27s ratios, display the unique behavior owing to their micr...
This work proposes the experimental study of an auxetic polymeric structure manufactured by 3D print...
Auxetic materials exhibit material properties, which are usually not seen in nature. This type of ma...
The auxetic cellular structures with two different chiral geometries (tetrachiral and hexachiral) we...
Auxetic structures have evolved beyond conventional cellular structures by offering unique attribute...
Auxetic Structures are a class of meta-materials uniquely characterised by their Negative Poisson’s ...
We present in this work the manufacturing, modeling, and testing of dome-shaped cellular structures ...
Recent frontiers in material development are represented by a class of so-called auxetic metamateri...
Auxetic structures exhibit negative Poissons ratios in one or more directions. When stretched, they ...
In recent years, the rapid development of digital fabrication technology has substantially boosted t...
Auxetic lattices exhibit a negative Poisson’s ratio and excellent energy absorption capability. Here...
The paper investigates the potential of auxetics in architectural applications by means of computati...
Auxetic metamaterials have enhanced indentation and penetration resistance due to their high shear s...
Auxetic behavior implies a negative Poisson’s ratio whereby the specimen contracts instead of expand...
In the present paper a two dimensional plate, made by structural straight elements and showing an au...
Auxetic materials with negative Poisson\u27s ratios, display the unique behavior owing to their micr...
This work proposes the experimental study of an auxetic polymeric structure manufactured by 3D print...
Auxetic materials exhibit material properties, which are usually not seen in nature. This type of ma...
The auxetic cellular structures with two different chiral geometries (tetrachiral and hexachiral) we...
Auxetic structures have evolved beyond conventional cellular structures by offering unique attribute...
Auxetic Structures are a class of meta-materials uniquely characterised by their Negative Poisson’s ...