The numerical simulation of the compression behavior of open-cell aluminum foams is discussed as a way to extract material property information for laser forming simulation. A bilinear isotropic model was implemented for the alloy base material whereas a parametric approach was used to build the finite element model of the foam structure. Compression tests were performed on commercial foams with different pore size and density, and the results of lower density foam were used for the model validation. Numerical results show a good agreement with experimental data in terms of foam deformation under compression and required loads
The possible options as materials for protective layers are aluminium foams which become also very p...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
Aluminium foams are a new group of materials used for impact energy absorbing elements. They are lig...
The numerical simulation of the compression behavior of open-cell aluminum foams is discussed as a w...
Laser forming of open-cell aluminum foams has been modeled by means of a 3D finite element model whi...
International audienceThe compression characteristics of open-cell aluminum foams were experimentall...
This paper deals with the experimental and numerical study of closed-cell aluminum-based foam under ...
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...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
AbstractTwo families of finite element models of anisotropic, aluminum alloy, open-cell foams are de...
This paper presents a representative volume element (RVE)-based modelling method to capture the mech...
The application of foams is widespread in many industrial scopes, because of the capability of the m...
The possible options as materials for protective layers are aluminium foams which become also very p...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
Aluminium foams are a new group of materials used for impact energy absorbing elements. They are lig...
The numerical simulation of the compression behavior of open-cell aluminum foams is discussed as a w...
Laser forming of open-cell aluminum foams has been modeled by means of a 3D finite element model whi...
International audienceThe compression characteristics of open-cell aluminum foams were experimentall...
This paper deals with the experimental and numerical study of closed-cell aluminum-based foam under ...
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...
Metal foams are two-phase compounds of a gas and a solid with several interesting physical and mecha...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
AbstractTwo families of finite element models of anisotropic, aluminum alloy, open-cell foams are de...
This paper presents a representative volume element (RVE)-based modelling method to capture the mech...
The application of foams is widespread in many industrial scopes, because of the capability of the m...
The possible options as materials for protective layers are aluminium foams which become also very p...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
Aluminium foams are a new group of materials used for impact energy absorbing elements. They are lig...