A preliminary study of the mechanical properties of auxetic cellular material consisting of re-entrant hexagonal honeycombs is presented. For different scales of the honeycombs, the finite element method (FEM) and experimental models are used to perform a parametric analysis on the effects of the Poisson’s ratio (cell angle) and the relative density (cell thickness) of honeycombs on bearing capacity and dynamic performance of the auxetic material. The analysis demonstrates that the ultimate bearing capacity of the presented auxetic cellular material is scale-independent when the Poisson’s ratio and the relative density are kept constant. The relationship between the geometric parameters and vibration level difference of the honeycombs is al...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
The main key performance factors of honeycombs are represented by the ability to withstand through-t...
Auxetic materials are increasingly used in the field of sports, defense, bio-medicine, and acoustic-...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
The effective static mechanical properties, such as the moduli of elasticity and rigidity and Poisso...
Auxetic materials exhibit a unique characteristic due to the altered microstructure. Different struc...
An analytical framework has been developed for predicting the equivalent in-plane elastic moduli (lo...
Honeycomb structures have found numerous applications as structural and biomedical materials due to ...
Auxetic honeycombs have proven to be an attractive advantage in actual engineering applications owin...
The combination of theoretical calculations, computer simulations, and experimental evaluation of Po...
This work illustrates the manufacturing and tensile testing of a novel concept of honeycomb structur...
Auxetic materials exhibit a unique characteristics when subjected to uniaxial loading. Various struc...
Honeycomb structures have applications in many engineering industries due to their desirable attribu...
The y-directional mechanical properties of hexagonal honeycombs with various cell-wall angles are ex...
The highly symmetric hexachiral honeycomb with an isotropic Poisson's ratio of -1 is one of the earl...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
The main key performance factors of honeycombs are represented by the ability to withstand through-t...
Auxetic materials are increasingly used in the field of sports, defense, bio-medicine, and acoustic-...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
The effective static mechanical properties, such as the moduli of elasticity and rigidity and Poisso...
Auxetic materials exhibit a unique characteristic due to the altered microstructure. Different struc...
An analytical framework has been developed for predicting the equivalent in-plane elastic moduli (lo...
Honeycomb structures have found numerous applications as structural and biomedical materials due to ...
Auxetic honeycombs have proven to be an attractive advantage in actual engineering applications owin...
The combination of theoretical calculations, computer simulations, and experimental evaluation of Po...
This work illustrates the manufacturing and tensile testing of a novel concept of honeycomb structur...
Auxetic materials exhibit a unique characteristics when subjected to uniaxial loading. Various struc...
Honeycomb structures have applications in many engineering industries due to their desirable attribu...
The y-directional mechanical properties of hexagonal honeycombs with various cell-wall angles are ex...
The highly symmetric hexachiral honeycomb with an isotropic Poisson's ratio of -1 is one of the earl...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
The main key performance factors of honeycombs are represented by the ability to withstand through-t...
Auxetic materials are increasingly used in the field of sports, defense, bio-medicine, and acoustic-...