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SiC-particulate aluminum composite foams produced from powder compacts: foaming and compression behavior
(Springer, 2006-07)
The foaming behavior of SiC-particulate (SiCp) aluminum composite powder compacts containing titanium hydride blowing agent was investigated by heating to 750°C in a pre-heated furnace. Aluminum powder compacts were also ...
SiC-particulate aluminum composite foams produced by powder compacts: Foaming and compression behavior
(Kluwer Academic Publishers, 2003)
The foaming behavior of SiC-particulate (8.6% by volume) aluminum composite powder compacts contained Titanium Hydride blowing agent was investigated by heating above the melting temperature (750°C) in a pre-heated furnace. ...
Split Hopkinson Pressure Bar compression testing of an aluminum alloy: Effect of lubricant type
(Kluwer Academic Publishers, 2003)
The Split Hopkinson Pressure Bar (SHPB), or Kolsky Bar, is widely used for studying the dynamic mechanical properties of metals and other materials. A cylindrical specimen is sandwiched between the incident and transmitter ...
Quasi-static and dynamic compression behaviour of an FPTM alumina-reinforced aluminium metal matrix composite
(Kluwer Academic Publishers, 1998)
An aluminium metal matrix composite reinforced with continuous unidirectional α-alumina fibres has been compression tested at quasi-static and dynamic strain rates. In the transverse direction, the composite showed increasing ...
Predicting energy absorption in a foam-filled thin-walled aluminum tube based on experimentally determined strengthening coefficient
(Elsevier, 2006)
The energy absorption in a foam-filled thin-walled circular Al tube was investigated based on the experimentally determined strengthening coefficient of filling using Al and polystyrene closed-cell foams with three different ...
The effect of strain rate on the compressive deformation behavior of a sintered Ti6Al4V powder compact
(Elsevier, 2008)
The high strain rate (220–550 s−1) and quasi-static (0.0016 s−1) compression deformation behavior of a sintered Ti6Al4V powder compact was investigated. The compact was prepared using atomized spherical particles (100–200 ...
Processing and compression testing of Ti6Al4V foams for biomedical applications
(Springer, 2009)
Open cell Ti6Al4V foams (60% porosity) were prepared at sintering temperatures between 1,200 and 1,350 °C using ammonium bicarbonate particles (315–500 μm) as space holder. The resulting cellular structure of the foams ...
Compression testing of a sintered Ti6Al4V powder compact for biomedical applications
(Elsevier, 2005)
In this study, the compression deformation behavior of a Ti6Al4V powder compact, prepared by the sintering of cold compacted atomized spherical particles (100–200 Am) and containing 36–38% porosity, was investigated at ...
High strain-rate compression testing of a short-fiber reinforced aluminum composite
(Elsevier, 1997)
Compression behavior of 15–26 Vf% Saffil™ short-fiber reinforced Al-1.17wt.%Cu alloy metal matrix composites has been determined over a strain-rate range of approximately 10−4 to 2×103 s−1. The strain-rate sensitivity of ...