The self-propagating foaming process of porous Al-Ni intermetallics was investigated. Aluminum and nickel powders were blended, and titanium and boron carbide powders were added as reactive exothermic agents. The blended powder was extruded to make a rod-shape precursor. Only one end of the rod precursor was heated to ignite the reaction. The reaction propagated spontaneously throughout the precursor. Pore formation took place at the same time as the reaction occurred. Adding the exothermic agent was effective to increase the porosity. Preheating the precursor before the ignition was also very effective to produce porous Al-Ni intermetallics with high porosity
Aluminium foams were produced by expanding multiple pieces of foamable precursor inside a mould inst...
Metallic foams are known for their interesting physical and mechanical properties such as high stiff...
Aluminium and Aluminium-based alloys have been foamed by using a special powder metallurgical route:...
The self-propagating foaming process of porous Al-Ni intermetallics was investigated. Aluminum and n...
Iron aluminides are intermetallics with interesting applications in porous form thanks to their mech...
Combustion foaming of Al Ti intermetallics was observed in situ by X ray radioscopy at the Technical...
A new process is proposed to fabricate an aluminum alloy matrix composite dispersed with intermetall...
Aluminium foams were produced via the powder route in which blends of metal powders and blowing agen...
In this study, metal foams were fabricated using Al-Ni combined with dolomite(CaMg(CO_3 )_2) as an a...
We developed a novel process for foaming aluminum and its alloys without using a blowing agent. The...
This article describes experimental investigation of thermal and combustion phenomena during the sel...
Metal foams with porosities greater than 90 pet were prepared by a novel powder metallurgy route usi...
Highly expanded, low-cost aluminum-based foams were successfully produced via powder metallurgy usin...
The new science of metallic foams is growing rapidly, in both the scientific research community and ...
Porous Ni3Al, NiAl, and NiAl3 intermetallics have been synthesized through simple and rapid process ...
Aluminium foams were produced by expanding multiple pieces of foamable precursor inside a mould inst...
Metallic foams are known for their interesting physical and mechanical properties such as high stiff...
Aluminium and Aluminium-based alloys have been foamed by using a special powder metallurgical route:...
The self-propagating foaming process of porous Al-Ni intermetallics was investigated. Aluminum and n...
Iron aluminides are intermetallics with interesting applications in porous form thanks to their mech...
Combustion foaming of Al Ti intermetallics was observed in situ by X ray radioscopy at the Technical...
A new process is proposed to fabricate an aluminum alloy matrix composite dispersed with intermetall...
Aluminium foams were produced via the powder route in which blends of metal powders and blowing agen...
In this study, metal foams were fabricated using Al-Ni combined with dolomite(CaMg(CO_3 )_2) as an a...
We developed a novel process for foaming aluminum and its alloys without using a blowing agent. The...
This article describes experimental investigation of thermal and combustion phenomena during the sel...
Metal foams with porosities greater than 90 pet were prepared by a novel powder metallurgy route usi...
Highly expanded, low-cost aluminum-based foams were successfully produced via powder metallurgy usin...
The new science of metallic foams is growing rapidly, in both the scientific research community and ...
Porous Ni3Al, NiAl, and NiAl3 intermetallics have been synthesized through simple and rapid process ...
Aluminium foams were produced by expanding multiple pieces of foamable precursor inside a mould inst...
Metallic foams are known for their interesting physical and mechanical properties such as high stiff...
Aluminium and Aluminium-based alloys have been foamed by using a special powder metallurgical route:...