ABSTRACT: Periodic cellular configurations with negative Poisson’s ratio have attracted the attention of several researchers because of their superior dynamic characteristics. Among the geometries with a negative Poisson’s ratio, the chiral topology features localized deformed configurations when excited at one of its natural frequencies. This is of particular importance as resonance can be exploited to minimize the power required for the appearance of localized deformations, thus giving practicality to the concept. The particular nature of these deformed configurations and the authority provided by the chiral geometry suggest the application of the proposed structural configuration for the design of innovative lifting devices, such as heli...
In this work we describe the vibroacoustic behavior of a novel concept of core for sandwich structur...
This paper investigates the Design and Analysis of the innovative morphing Airfoil using the Auxetic...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...
Periodic cellular configurations with negative Poisson's ratio have attracted the attention of sever...
This paper presents an innovative wing profile featuring an internal truss-like structure of chiral ...
This paper presents an innovative wing profile featuring an internal truss-like structure of chiral ...
This paper investigates the flat-wise compression behavior of an innovative cellular structure confi...
ABSTRACT: Extensive research is being devoted to the analysis and application of cellular solids for...
This paper studies a mechanical metamaterial with tetrachiral topology by mathematical modeling. Chi...
The paper investigates the response of complex cellular structures made of composite materials that ...
Chiral honeycombs are one of the main classes of mechanical metamaterials with the potential to exhi...
An auxetic (or negative Poisson's ratio) material expands in all directions when pulled in only one,...
Extensive research is being devoted to the analysis and application of cellular solids for the desig...
Low-density cellular solids have demonstrated superior mechanical properties as well as multifunctio...
The chiral lattice is a unique structural network not sym-metric to its mirror image, and with a neg...
In this work we describe the vibroacoustic behavior of a novel concept of core for sandwich structur...
This paper investigates the Design and Analysis of the innovative morphing Airfoil using the Auxetic...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...
Periodic cellular configurations with negative Poisson's ratio have attracted the attention of sever...
This paper presents an innovative wing profile featuring an internal truss-like structure of chiral ...
This paper presents an innovative wing profile featuring an internal truss-like structure of chiral ...
This paper investigates the flat-wise compression behavior of an innovative cellular structure confi...
ABSTRACT: Extensive research is being devoted to the analysis and application of cellular solids for...
This paper studies a mechanical metamaterial with tetrachiral topology by mathematical modeling. Chi...
The paper investigates the response of complex cellular structures made of composite materials that ...
Chiral honeycombs are one of the main classes of mechanical metamaterials with the potential to exhi...
An auxetic (or negative Poisson's ratio) material expands in all directions when pulled in only one,...
Extensive research is being devoted to the analysis and application of cellular solids for the desig...
Low-density cellular solids have demonstrated superior mechanical properties as well as multifunctio...
The chiral lattice is a unique structural network not sym-metric to its mirror image, and with a neg...
In this work we describe the vibroacoustic behavior of a novel concept of core for sandwich structur...
This paper investigates the Design and Analysis of the innovative morphing Airfoil using the Auxetic...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...