An increasing interest in lightweight metallic foams for automotive, aerospace and other applications has been observed in recent years. This is mainly due to the weight reduction that can be achieved using foams and for their mechanical energy absorption and acoustic damping capabilities. An accurate knowledge of the mechanical behavior of these materials, especially under dynamic loadings, is thus necessary. Unfortunately, metal foams and in general “soft” materials exhibit a series of peculiarities that make difficult the adoption of standard testing techniques for their high strain-rate characterization. This paper presents an innovative apparatus, where high strain-rate tests of metal foams or other soft materials can be performed by e...
Cellular materials like aluminum foam which is the subject of interest here are generally characteri...
Metallic foam-filled tubes and their empty counterparts have been tested at quasi-static and dynamic...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
An increasing interest in lightweight metallic foams for automotive, aerospace, and other applicatio...
There is strong interest in employing lightweight metallic foams for automotive and aerospace applic...
The high strain-rate compressive behaviour of a structural aluminium foam (manufactured by IFAM) has...
Aluminum (Al) closed-cell foams are materials of increasing importance because they have good energy...
As the trend for lighter more efficient structures continues, the requirement for alternative materi...
The quasi-static and high strain rate compression behavior of an Al closed cell foam was examined in...
Closed-cell aluminium foams were fabricated and characterised at different strain rates. Quasi-stati...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The high strain-rale compressive behaviour of a structural aluminium foam (manufactured by IFAM) has...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
This paper presents an experimental study using a new testing device based on a nylon Hopkinson bar...
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...
Metallic foam-filled tubes and their empty counterparts have been tested at quasi-static and dynamic...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...
An increasing interest in lightweight metallic foams for automotive, aerospace, and other applicatio...
There is strong interest in employing lightweight metallic foams for automotive and aerospace applic...
The high strain-rate compressive behaviour of a structural aluminium foam (manufactured by IFAM) has...
Aluminum (Al) closed-cell foams are materials of increasing importance because they have good energy...
As the trend for lighter more efficient structures continues, the requirement for alternative materi...
The quasi-static and high strain rate compression behavior of an Al closed cell foam was examined in...
Closed-cell aluminium foams were fabricated and characterised at different strain rates. Quasi-stati...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
The high strain-rale compressive behaviour of a structural aluminium foam (manufactured by IFAM) has...
The two-wave-separation method is employed for the large strain measurements in compressive tests on...
This paper presents an experimental study using a new testing device based on a nylon Hopkinson bar...
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...
Metallic foam-filled tubes and their empty counterparts have been tested at quasi-static and dynamic...
It has been well established that ALPORAS® foams is a strain rate sensitive material. However, the s...