Auxetic materials exhibit a unique characteristic due to the altered microstructure. Different structures have been used to model these materials. This paper treats a development of finite element model and theoretical formulation of 3D star honeycomb structure of these materials. Various shape parameters of the structural cell were evaluated with respect to the basic mechanical properties of the cell. Finite element and analytical approach for various geometrical parameters were numerically used to formulate the characteristics of the material. The study aims at quantifying mechanical properties for any domain in which auxetic material is of interest for variations in geometrical parameters. It is evident that mechanical properties of the ...
ABSTRACT: Analytical expressions for the effective elastic properties of cellular hexagonal honeycom...
Auxetic materials and structures have a negative Poisson’s ratio. When a tensile load is applied, th...
In this study, a novel auxetic structure, namely RDN, is presented in two- and three-dimensions. The...
A preliminary study of the mechanical properties of auxetic cellular material consisting of re-entra...
Auxetic materials exhibit a unique characteristics when subjected to uniaxial loading. Various struc...
An analytical framework has been developed for predicting the equivalent in-plane elastic moduli (lo...
Honeycomb structures have applications in many engineering industries due to their desirable attribu...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
This paper presents some general two- and three-dimensional finite element models to study the equiv...
Auxetic structures are popular, since they have many applications in defense, textile and sport indu...
Honeycomb structures have found numerous applications as structural and biomedical materials due to ...
The combination of theoretical calculations, computer simulations, and experimental evaluation of Po...
The effective static mechanical properties, such as the moduli of elasticity and rigidity and Poisso...
abstract: The goal of our research was to develop and validate a method for predicting the mechanica...
The main key performance factors of honeycombs are represented by the ability to withstand through-t...
ABSTRACT: Analytical expressions for the effective elastic properties of cellular hexagonal honeycom...
Auxetic materials and structures have a negative Poisson’s ratio. When a tensile load is applied, th...
In this study, a novel auxetic structure, namely RDN, is presented in two- and three-dimensions. The...
A preliminary study of the mechanical properties of auxetic cellular material consisting of re-entra...
Auxetic materials exhibit a unique characteristics when subjected to uniaxial loading. Various struc...
An analytical framework has been developed for predicting the equivalent in-plane elastic moduli (lo...
Honeycomb structures have applications in many engineering industries due to their desirable attribu...
Abstract Auxetic materials are a special case of cellular materials, which exhibit a negative Poisso...
This paper presents some general two- and three-dimensional finite element models to study the equiv...
Auxetic structures are popular, since they have many applications in defense, textile and sport indu...
Honeycomb structures have found numerous applications as structural and biomedical materials due to ...
The combination of theoretical calculations, computer simulations, and experimental evaluation of Po...
The effective static mechanical properties, such as the moduli of elasticity and rigidity and Poisso...
abstract: The goal of our research was to develop and validate a method for predicting the mechanica...
The main key performance factors of honeycombs are represented by the ability to withstand through-t...
ABSTRACT: Analytical expressions for the effective elastic properties of cellular hexagonal honeycom...
Auxetic materials and structures have a negative Poisson’s ratio. When a tensile load is applied, th...
In this study, a novel auxetic structure, namely RDN, is presented in two- and three-dimensions. The...