Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, because, on one hand, the significant variability (e.g. 20% scatter band) of foam properties and the lack of reliable dynamic test methods for foams bring particular difficulty to accurately evaluate the strain-rate sensitivity in experiments; while on the other hand numerical models based on idealised cell structures (e.g. Kelvin and Voronoi) may not be sufficiently representative to capture the actual structural effect. To overcome these limitations, the strain-rate sensitivity of the compressive and tensile properties of closed-cell aluminium Alporas foam is investigated in this study by means of meso-scale realistic finite element (FE) si...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
This study investigated the high-strain rate mechanical properties of open-cell aluminium foam M-por...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
The study presents the effect of cell wall ductility and toughness on the compressive behaviour of c...
The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated und...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
This paper addresses numerical and experimental analysis of the m.pore® aluminium foam. Numerical mo...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
AbstractThe compressive behavior of open-cell aluminum alloy foam and stainless steel woven textile ...
We report the results of an experimental and numerical study conducted on a closed cell aluminium fo...
We report the results of an experimental and numerical study conducted on a closed-cell aluminium fo...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
This study investigated the high-strain rate mechanical properties of open-cell aluminium foam M-por...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
The study presents the effect of cell wall ductility and toughness on the compressive behaviour of c...
The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated und...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
This paper addresses numerical and experimental analysis of the m.pore® aluminium foam. Numerical mo...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
AbstractThe compressive behavior of open-cell aluminum alloy foam and stainless steel woven textile ...
We report the results of an experimental and numerical study conducted on a closed cell aluminium fo...
We report the results of an experimental and numerical study conducted on a closed-cell aluminium fo...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...