This work proposes the creation and the validation of shell-based numerical models of closed-cell aluminum foams, useful for FEM analyses. Foam cylinders were produced and specimens extracted by them were morphologically characterized and mechanically tested. Successively, commercial software packages were used for, firstly, creating and modifying geometrical models and, successively, generating FEM models based on shell elements. The results of FEM fit well with the mechanical tests, in terms of stress-strain response. Moreover, they highlight a results variability, reflecting the original variability associated to random generation of the geometrical models
This thesis is concerned with developing numerical models to predict the mechanical behaviour of clo...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
This work proposes the creation and the validation of shell-based numerical models of closed-cell al...
In the last years a lot of studies dealt with the material modeling of metallic foams, especially fo...
This contribution addresses the finite element modelling of closed cell metallic foams using Represe...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
Aluminium foams are a new group of materials used for impact energy absorbing elements. They are lig...
Cell wall material properties of Al-alloy foams have been derived by a combination of nanoindentatio...
In this study, a representative volume element (RVE) method is developed to capture the mechanical b...
In this study, a representative volume element (RVE) method is developed to capture the mechanical b...
Aluminium foams are a new group of materials used for impact energy absorbing elements. They are lig...
This paper presents a representative volume element (RVE)-based modelling method to capture the mech...
The mechanical behavior of closed cell metallic foams strongly depends on their geometry at the scal...
The application of foams is widespread in many industrial scopes, because of the capability of the m...
This thesis is concerned with developing numerical models to predict the mechanical behaviour of clo...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
This work proposes the creation and the validation of shell-based numerical models of closed-cell al...
In the last years a lot of studies dealt with the material modeling of metallic foams, especially fo...
This contribution addresses the finite element modelling of closed cell metallic foams using Represe...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
Aluminium foams are a new group of materials used for impact energy absorbing elements. They are lig...
Cell wall material properties of Al-alloy foams have been derived by a combination of nanoindentatio...
In this study, a representative volume element (RVE) method is developed to capture the mechanical b...
In this study, a representative volume element (RVE) method is developed to capture the mechanical b...
Aluminium foams are a new group of materials used for impact energy absorbing elements. They are lig...
This paper presents a representative volume element (RVE)-based modelling method to capture the mech...
The mechanical behavior of closed cell metallic foams strongly depends on their geometry at the scal...
The application of foams is widespread in many industrial scopes, because of the capability of the m...
This thesis is concerned with developing numerical models to predict the mechanical behaviour of clo...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...