The ability to contro the mechanical of bulk nanostructured aluminium alloys through judicious selection of processing parameters offers the potential for optimised perfomance together with the prospect of producing materiasl based on fitness-for-purpose criteria. In this investigation, nano-quasicrystaline powders of aluminium alloy Al93Fe3Cr2Ti2, were consolidated using extrusion.Peer Reviewe
The characterization of mechanical properties (i.e. stress-strain characteristics measured in tensil...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
Nanocomposite Al-based alloys can be obtained with a combination of amorphous, crystalline and quasi...
A brief outline of the processing parameters involved in the search for technique offering efficient...
Quasicrystalline aluminium alloys have been studied in the past years achieving higher strength than...
The strength of conventional aluminium alloys decreases rapidly above 150°C, which limits their appl...
The strength of conventional aluminium alloys decreases rapidly above 150°C, which limits their ...
Crystallization of amorphous alloys provides opportunities to produce bulk nanostructured materials ...
Al93Fe3Cr2Ti2 is a highly promising alloy due to its capacity to form quasicrystals. In the present ...
A multi-phase nanocrystalline Al93Fe3Cr2Ti 2 alloy containing 30 vol.% intermetallic particles was p...
Rapidly solidified nanoquasicrystalline Al93Fe3Cr2Ti2 at% alloy has previously shown outstanding mec...
A multi-phase nanocrystalline Al93Fe3Cr2Ti 2 alloy containing 30 vol.% intermetallic particles was p...
A multi-phase nanocrystalline Al93Fe3Cr2Ti 2 alloy containing 30 vol.% intermetallic particles was p...
Nano-quasicrystalline Al-Fe-Cr based alloys produced by rapid solidification processes exhibit high ...
Nano-quasicrystalline Al-Fe-Cr based alloys produced by rapid solidification processes exhibit high ...
The characterization of mechanical properties (i.e. stress-strain characteristics measured in tensil...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
Nanocomposite Al-based alloys can be obtained with a combination of amorphous, crystalline and quasi...
A brief outline of the processing parameters involved in the search for technique offering efficient...
Quasicrystalline aluminium alloys have been studied in the past years achieving higher strength than...
The strength of conventional aluminium alloys decreases rapidly above 150°C, which limits their appl...
The strength of conventional aluminium alloys decreases rapidly above 150°C, which limits their ...
Crystallization of amorphous alloys provides opportunities to produce bulk nanostructured materials ...
Al93Fe3Cr2Ti2 is a highly promising alloy due to its capacity to form quasicrystals. In the present ...
A multi-phase nanocrystalline Al93Fe3Cr2Ti 2 alloy containing 30 vol.% intermetallic particles was p...
Rapidly solidified nanoquasicrystalline Al93Fe3Cr2Ti2 at% alloy has previously shown outstanding mec...
A multi-phase nanocrystalline Al93Fe3Cr2Ti 2 alloy containing 30 vol.% intermetallic particles was p...
A multi-phase nanocrystalline Al93Fe3Cr2Ti 2 alloy containing 30 vol.% intermetallic particles was p...
Nano-quasicrystalline Al-Fe-Cr based alloys produced by rapid solidification processes exhibit high ...
Nano-quasicrystalline Al-Fe-Cr based alloys produced by rapid solidification processes exhibit high ...
The characterization of mechanical properties (i.e. stress-strain characteristics measured in tensil...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
Nanocomposite Al-based alloys can be obtained with a combination of amorphous, crystalline and quasi...