The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated under various strain rates from 10-3 to 102 s-1 using compressive tests conducted on MTS and Instron test machines. High speed camera videos show that localized deformation occurs in Alporas foam specimens uniformly, but not in Cymat foams. The stress-strain curves for Alporas foams are smooth and regular, while they oscillate dramatically for Cymat foams. Alporas foams exhibit strain rate sensitivity, i.e. with an increase in strain rate, the normalized plateau stress and energy absorption capacity increase. The plateau stress for Cymat foams was more sensitive than Alporas to strain rate, but the energy absorption less so, at least at a nomina...
The mechanical properties of a closed-cell aluminium foam were investigated by compressive tests, an...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...
The aim of this study is proper description of stress-strain behaviour of the metal foam structure ...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
Compressive behaviour of CYMAT aluminium foams with relative densities ranged from 5% to 20% has bee...
The compressive constitutive behavior of a closed-cell aluminum foam (ALPORAS) manufactured by Shink...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The high strain rate compressive behaviour of two cellular aluminium alloys (Alulight and Duocel) ha...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The characterization of a closed-cell aluminum foam with the trade name Alporas is carried out here ...
The study presents the effect of cell wall ductility and toughness on the compressive behaviour of c...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
Compression experiments were conducted on a closed-cell aluminum foam at strain rates ranging from 1...
In this work, quasistatic mechanical compression experiments were used to study the stress–strain re...
The mechanical properties of a closed-cell aluminium foam were investigated by compressive tests, an...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...
The aim of this study is proper description of stress-strain behaviour of the metal foam structure ...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
Compressive behaviour of CYMAT aluminium foams with relative densities ranged from 5% to 20% has bee...
The compressive constitutive behavior of a closed-cell aluminum foam (ALPORAS) manufactured by Shink...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The high strain rate compressive behaviour of two cellular aluminium alloys (Alulight and Duocel) ha...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The characterization of a closed-cell aluminum foam with the trade name Alporas is carried out here ...
The study presents the effect of cell wall ductility and toughness on the compressive behaviour of c...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
Compression experiments were conducted on a closed-cell aluminum foam at strain rates ranging from 1...
In this work, quasistatic mechanical compression experiments were used to study the stress–strain re...
The mechanical properties of a closed-cell aluminium foam were investigated by compressive tests, an...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...
The aim of this study is proper description of stress-strain behaviour of the metal foam structure ...