Iron aluminides are intermetallics with interesting applications in porous form thanks to their mechanical and corrosion resistance properties. However, making porous forms of these materials is not easy due to their high melting points. We formed FeAl foams by elemental iron and aluminum powders sintering with tartaric acid additive. Tartaric acid worked as an in situ gas-releasing agent during the self-propagating high-temperature synthesis of FeAl intermetallic alloy, which was confirmed by X-ray diffraction measurements. The porosity of the formed foams was up to 36 ± 4%. In the core of the sample, the average equivalent circle diameter was found to be 47 ± 20 µm, while on the surface, it was 35 ± 16 µm;...
Metallic foams have been of considerable interest both from the industrial applicability and scienti...
This work reports the processing of aluminum (Al) foams with pore size in the range from 1 to 2 mm a...
Porous aluminum foams were successfully fabricated following the space-holder powder metallurgy meth...
Iron aluminides are intermetallics with interesting applications in porous form thanks to their mech...
Fabrication of metallic foams by sintering metal powders mixed with thermally degradable compounds i...
AbstractMetal foams have potential for variety of applications such as ultra-light weight structural...
The influence of the addition of organic compounds, such as palmitic acid and cholesteryl myristate,...
In this paper, fabrication of open-celled porous Fe-10%Al foam by space-holder technique in which Na...
A new graded-porosity FeAl alloy can be fabricated through Fe and Al elemental reactive synthesis. F...
The self-propagating foaming process of porous Al-Ni intermetallics was investigated. Aluminum and n...
A process utilizing a powder metallurgy (PM) approach was developed to produce open-cell metallic fo...
During the last decade, various technologies such as slurry gelating, spacer, sintering, casting and...
A process based on a powder metallurgy approach was developed to produce open-cell metallic foams. A...
Porous Fe-25 wt.% Al alloy is synthesized by reactive synthesis with Fe and Al powders as the raw ma...
The sintering behaviour of elemental powders of Fe and Al was investigated at various heating rates ...
Metallic foams have been of considerable interest both from the industrial applicability and scienti...
This work reports the processing of aluminum (Al) foams with pore size in the range from 1 to 2 mm a...
Porous aluminum foams were successfully fabricated following the space-holder powder metallurgy meth...
Iron aluminides are intermetallics with interesting applications in porous form thanks to their mech...
Fabrication of metallic foams by sintering metal powders mixed with thermally degradable compounds i...
AbstractMetal foams have potential for variety of applications such as ultra-light weight structural...
The influence of the addition of organic compounds, such as palmitic acid and cholesteryl myristate,...
In this paper, fabrication of open-celled porous Fe-10%Al foam by space-holder technique in which Na...
A new graded-porosity FeAl alloy can be fabricated through Fe and Al elemental reactive synthesis. F...
The self-propagating foaming process of porous Al-Ni intermetallics was investigated. Aluminum and n...
A process utilizing a powder metallurgy (PM) approach was developed to produce open-cell metallic fo...
During the last decade, various technologies such as slurry gelating, spacer, sintering, casting and...
A process based on a powder metallurgy approach was developed to produce open-cell metallic foams. A...
Porous Fe-25 wt.% Al alloy is synthesized by reactive synthesis with Fe and Al powders as the raw ma...
The sintering behaviour of elemental powders of Fe and Al was investigated at various heating rates ...
Metallic foams have been of considerable interest both from the industrial applicability and scienti...
This work reports the processing of aluminum (Al) foams with pore size in the range from 1 to 2 mm a...
Porous aluminum foams were successfully fabricated following the space-holder powder metallurgy meth...