This paper addresses numerical and experimental analysis of the m.pore® aluminium foam. Numerical models are based on computed tomography data in order to capture the complex material meso-structure. Uni-axial experimental tests were performed for quasi-static loading and an excellent agreement with numerical results has been obtained. Numerical analyses were extended for characteristic strain rates in order to analyse the strain rate sensitivity and anisotropy. Both, the micro-inertia and the base material strain rate sensitivity have an influence on the dynamic behaviour of the cellular meta
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
This study investigated the high-strain rate mechanical properties of open-cell aluminium foam M-por...
Open-cell metal foams are a new class of cellular materials with structural features resembling thos...
In the present paper, the macroscopic mechanical properties of open-cell M-Pore® sponge (porosity of...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
International audienceThe mechanical behaviour of closed-cell aluminium foams made by both powder me...
We report the results of an experimental and numerical study conducted on a closed-cell aluminium fo...
The study presents the effect of cell wall ductility and toughness on the compressive behaviour of c...
We report the results of an experimental and numerical study conducted on a closed cell aluminium fo...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated und...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
This study investigated the high-strain rate mechanical properties of open-cell aluminium foam M-por...
Open-cell metal foams are a new class of cellular materials with structural features resembling thos...
In the present paper, the macroscopic mechanical properties of open-cell M-Pore® sponge (porosity of...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
International audienceThe mechanical behaviour of closed-cell aluminium foams made by both powder me...
We report the results of an experimental and numerical study conducted on a closed-cell aluminium fo...
The study presents the effect of cell wall ductility and toughness on the compressive behaviour of c...
We report the results of an experimental and numerical study conducted on a closed cell aluminium fo...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated und...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
AbstractPart II of this study is concerned with the modeling of all aspects of the compressive respo...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...