This study investigated the high-strain rate mechanical properties of open-cell aluminium foam M-pore®. While previous research has examined the response of this type of foam under quasi-static and transitional dynamic loading conditions, there is a lack of knowledge about its behaviour under higher strain rates (transitional and shock loading regimes). To address this gap in understanding, cylindrical open-cell foam specimens were tested using a modified Direct Impact Hopkinson Bar (DIHB) apparatus over a wide range of strain rates, up to 93 m/s. The results showed a strong dependency of the foam's behaviour on the loading rate, with increased plateau stress and changes in deformation front formation and propagation at higher strain rates....
Aluminum (Al) closed-cell foams are materials of increasing importance because they have good energy...
The thesis is about the characterization of the microstructure of several aluminium foams and its re...
The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated und...
Closed-cell aluminium foams were fabricated and characterised at different strain rates. Quasi-stati...
Closed-cell aluminium foam is a well-known engineering cellular structure due to its outstanding com...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
AbstractThis two-part study is concerned with the understanding and modeling of the compressive resp...
The quasi-static and high strain rate compression behavior of an Al closed cell foam was examined in...
This paper addresses numerical and experimental analysis of the m.pore® aluminium foam. Numerical mo...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
AbstractThe two-part series of papers presents the results of a study of the crushing behavior of op...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
The present research numerically investigates shock propagation through closed-cell aluminium foam v...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
Aluminum (Al) closed-cell foams are materials of increasing importance because they have good energy...
The thesis is about the characterization of the microstructure of several aluminium foams and its re...
The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated und...
Closed-cell aluminium foams were fabricated and characterised at different strain rates. Quasi-stati...
Closed-cell aluminium foam is a well-known engineering cellular structure due to its outstanding com...
Realistic simulations are increasingly demanded to clarify the dynamic behaviour of foam materials, ...
AbstractThis two-part study is concerned with the understanding and modeling of the compressive resp...
The quasi-static and high strain rate compression behavior of an Al closed cell foam was examined in...
This paper addresses numerical and experimental analysis of the m.pore® aluminium foam. Numerical mo...
textThis study is concerned with the mechanical behavior of open-cell aluminum foams. In particular ...
AbstractThe two-part series of papers presents the results of a study of the crushing behavior of op...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
The present research numerically investigates shock propagation through closed-cell aluminium foam v...
The dynamic compressive response of closed-cell (CYMAT™) stabilised aluminium alloy foams (SAF) has ...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
Aluminum (Al) closed-cell foams are materials of increasing importance because they have good energy...
The thesis is about the characterization of the microstructure of several aluminium foams and its re...
The compressive behavior of two closed cell aluminum foams (Alporas and Cymat) were investigated und...