This paper presents a representative volume element (RVE)-based modelling method to capture the mechanical behaviour of aluminum foams under compressive loadings. Octadecahedron is selected as a geometric basis shape to form closed cells of the aluminum foams in the microstructured RVE model to simulate the mechanical behaviour under compressive loadings. The stress-strain relationship obtained from the numerical modelling is compared to that from experimental study and agreements between these results demonstrate the validity of the proposed RVE model. Through observing the deformation evolution of cells during a compressive loading process, the failure modes of aluminum foams are identified and analysed using the proposed RVE model. Furth...
The numerical simulation of the compression behavior of open-cell aluminum foams is discussed as a w...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
The purpose of this paper is the investigation of the major failure mechanisms of aluminium foams, w...
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...
In this paper a micromechanical modelling method is developed to investigate the mechanical behaviou...
This thesis is concerned with developing numerical models to predict the mechanical behaviour of clo...
This paper deals with the experimental and numerical study of closed-cell aluminum-based foam under ...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
The effect of cell-size on the compressive response and energy absorption features of closed-cell al...
The mechanical properties of a closed-cell aluminium foam were investigated by compressive tests, an...
In this work, quasistatic mechanical compression experiments were used to study the stress–strain re...
The characterization of a closed-cell aluminum foam with the trade name Alporas is carried out here ...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
The numerical simulation of the compression behavior of open-cell aluminum foams is discussed as a w...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
The purpose of this paper is the investigation of the major failure mechanisms of aluminium foams, w...
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...
In this paper a micromechanical modelling method is developed to investigate the mechanical behaviou...
This thesis is concerned with developing numerical models to predict the mechanical behaviour of clo...
This paper deals with the experimental and numerical study of closed-cell aluminum-based foam under ...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
The effect of cell-size on the compressive response and energy absorption features of closed-cell al...
The mechanical properties of a closed-cell aluminium foam were investigated by compressive tests, an...
In this work, quasistatic mechanical compression experiments were used to study the stress–strain re...
The characterization of a closed-cell aluminum foam with the trade name Alporas is carried out here ...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
The numerical simulation of the compression behavior of open-cell aluminum foams is discussed as a w...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
The purpose of this paper is the investigation of the major failure mechanisms of aluminium foams, w...