This work investigates the mechanical response of bio-inspired titanium mechanical metamaterials with negative Poisson’s ratio evolved from rotating squares unit. The systems were designed and optimized using finite element analysis, with peculiar focus on the shape profile at the interconnection regions of the rotating units. The proposed solution consists of a combined auxetic rotating/chiral architecture with enhanced mechanical and topological properties which exhibits a 3% of global elastic strain of the structure and a Poisson’s ratio equal to -0.94. Numerical results are in good agreement with those obtained from experimental tests on a 3D printed Onyx prototype. We also examined the effect on the structural response of the metamater...
Artificial architected metamaterials equipped with unique mechanical and physical properties that ar...
The elastic modulus and Poisson's ratio of a 3D anti-tetrachiral (3ATC) metamaterial design was inve...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...
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...
The work presents a novel polyhedral mechanical metamaterial based on rotating triangular prisms con...
Rotating squares auxetic metamaterials have the peculiar feature of a negative Poisson’s ratio. This...
Auxetic metamaterials and structures have excellent mechanical properties such as shear resistance, ...
Negative Poisson's ratio has been shown to enhance packing efficiency, impact absorption, indentatio...
This work designs and experimentally validates a novel bone-mimicking biomaterial for human cancello...
This work designs and experimentally validates a novel bone-mimicking biomaterial for human cancello...
Chiral honeycombs are one of the main classes of mechanical metamaterials with the potential to exhi...
Chiral honeycombs are one of the main classes of mechanical metamaterials with the potential to exhi...
Auxetic materials exhibit material properties, which are usually not seen in nature. This type of ma...
The concept of "mechanical metamaterials" has become increasingly popular, since their macro-scale c...
Artificial architected metamaterials equipped with unique mechanical and physical properties that ar...
The elastic modulus and Poisson's ratio of a 3D anti-tetrachiral (3ATC) metamaterial design was inve...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...
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...
The work presents a novel polyhedral mechanical metamaterial based on rotating triangular prisms con...
Rotating squares auxetic metamaterials have the peculiar feature of a negative Poisson’s ratio. This...
Auxetic metamaterials and structures have excellent mechanical properties such as shear resistance, ...
Negative Poisson's ratio has been shown to enhance packing efficiency, impact absorption, indentatio...
This work designs and experimentally validates a novel bone-mimicking biomaterial for human cancello...
This work designs and experimentally validates a novel bone-mimicking biomaterial for human cancello...
Chiral honeycombs are one of the main classes of mechanical metamaterials with the potential to exhi...
Chiral honeycombs are one of the main classes of mechanical metamaterials with the potential to exhi...
Auxetic materials exhibit material properties, which are usually not seen in nature. This type of ma...
The concept of "mechanical metamaterials" has become increasingly popular, since their macro-scale c...
Artificial architected metamaterials equipped with unique mechanical and physical properties that ar...
The elastic modulus and Poisson's ratio of a 3D anti-tetrachiral (3ATC) metamaterial design was inve...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...