The mechanical behaviours of metal foams greatly depend on their cell topology, including cell shape, cell size etc. as well as relative density and material properties of the cell wall. However, the cell shape effect on the mechanical behaviours of such materials appears to be ignored in previous research. In this paper, both analytic and finite element models are developed and employed to investigate the effect of cell shape on the mechanical behaviour of open-cell magnesium alloy (AZ91) foams under compression, including deformation modes and failure modes. For numerical modelling, both two-dimensional (2-D) and three-dimensional (3-D) finite element models are developed to predict the compressive behaviours of typical open-cell metal fo...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
In the present paper we present the approach for modeling of the elastic behavior of open-cell metal...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
The mechanical behaviours of metal foams greatly depend on their cell topology, including cell shape...
This paper deals with compression test simulations of open cellular magnesium alloy under dynamic lo...
Cell wall material properties of Al-alloy foams have been derived by a combination of nanoindentatio...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
It has become a critical issue that the human life and civil facility have been threatened by the in...
Cellular materials have a bulk matrix with a larger number of voids named also cells. Metallic foams...
This thesis is concerned with developing numerical models to predict the mechanical behaviour of clo...
AbstractThis two-part study is concerned with the understanding and modeling of the compressive resp...
This study used an open source three-dimensional Voronoi cell software library to create nonlinear f...
In this study, the mechanical properties of a closed-cell aluminium foam have been investigated by c...
AbstractTwo families of finite element models of anisotropic, aluminum alloy, open-cell foams are de...
Metal foams possess attractive mechanical properties like high stiffness to weight ratio.When used t...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
In the present paper we present the approach for modeling of the elastic behavior of open-cell metal...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
The mechanical behaviours of metal foams greatly depend on their cell topology, including cell shape...
This paper deals with compression test simulations of open cellular magnesium alloy under dynamic lo...
Cell wall material properties of Al-alloy foams have been derived by a combination of nanoindentatio...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
It has become a critical issue that the human life and civil facility have been threatened by the in...
Cellular materials have a bulk matrix with a larger number of voids named also cells. Metallic foams...
This thesis is concerned with developing numerical models to predict the mechanical behaviour of clo...
AbstractThis two-part study is concerned with the understanding and modeling of the compressive resp...
This study used an open source three-dimensional Voronoi cell software library to create nonlinear f...
In this study, the mechanical properties of a closed-cell aluminium foam have been investigated by c...
AbstractTwo families of finite element models of anisotropic, aluminum alloy, open-cell foams are de...
Metal foams possess attractive mechanical properties like high stiffness to weight ratio.When used t...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
In the present paper we present the approach for modeling of the elastic behavior of open-cell metal...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...