It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the strain rate effect is not well quantified as it is not unusual for strain rate to vary during high speed compression. Moreover, according to previous research, aluminium foams, especially ALPORAS® foams, behave differently at low and high strain rates. Therefore, different plastic deformation mechanisms are expected for low and high strain rate loadings as a result of micro-inertia of cell walls. In this paper, the strain rate effect on the energy dissipation capacity of ALPORAS® foam was investigated experimentally by using a High Rate Instron Test System, with cross-head speed up to 10 m/s. The compressive tests were conducted over strain ra...
Closed-cell aluminium foams were fabricated and characterised at different strain rates. Quasi-stati...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
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...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The compressive constitutive behavior of a closed-cell aluminum foam (ALPORAS) manufactured by Shink...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
The high strain rate compressive behaviour of two cellular aluminium alloys (Alulight and Duocel) ha...
Compression experiments were conducted on a closed-cell aluminum foam at strain rates ranging from 1...
The quasi-static and high strain rate compression behavior of an Al closed cell foam was examined in...
Compressive behaviour of CYMAT aluminium foams with relative densities ranged from 5% to 20% has bee...
Compressive deformation behaviour of closed cell aluminum–fly ash composite foam of varying relative...
Compressive deformation behaviour of closed cell aluminum–fly ash composite foam of varying relative...
Closed-cell aluminium foams were fabricated and characterised at different strain rates. Quasi-stati...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
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...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
An experimental investigation into the strain rate sensitivity of a closed-cell aluminum foam at roo...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The compressive constitutive behavior of a closed-cell aluminum foam (ALPORAS) manufactured by Shink...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
The high strain rate compressive behaviour of two cellular aluminium alloys (Alulight and Duocel) ha...
Compression experiments were conducted on a closed-cell aluminum foam at strain rates ranging from 1...
The quasi-static and high strain rate compression behavior of an Al closed cell foam was examined in...
Compressive behaviour of CYMAT aluminium foams with relative densities ranged from 5% to 20% has bee...
Compressive deformation behaviour of closed cell aluminum–fly ash composite foam of varying relative...
Compressive deformation behaviour of closed cell aluminum–fly ash composite foam of varying relative...
Closed-cell aluminium foams were fabricated and characterised at different strain rates. Quasi-stati...
It is necessary to evaluate the mechanical properties of foam materials at wide range of strain rate...
The study presents the effect of cell wall ductility and toughness on the compressive behaviour of c...