Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high strength over commercial aluminium alloys have been studied for many years. In this work a nanoquasicrystalline Al-Fe-Cr-Ti alloy powder and a nanocomposite consisting of a mixture of a nanoquasicrystalline alloy and nanosize γ-Al2O3 powders were produced through mechanical milling with different milling speeds. It has been observed that a higher milling time or milling speed can improve the homogeneity of the γ-Al2O3 distribution. The α-Al crystallite size decreases and the hardness increases with the milling time. The smallest crystallite size (14 nm) and the highest hardness value (638 HV10g) were obtained for the nanocomposite after 30 h of m...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
Metal matrix nanocomposites are advanced materials developed using ceramic nanoreinforcements and na...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
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 ...
We report a study of the structure-processing-property relationships in a high strength Al93Fe3Cr2Ti...
We report a study of the structure-processing-property relationships in a high strength Al93Fe3Cr2Ti...
Composites based on the nanocrystalline aluminum alloy EN AW-2017 (3.9Cu, 0.6Mn, 0.7Mg, bal. Al, wt....
Composites based on the nanocrystalline aluminum alloy EN AW-2017 (3.9Cu, 0.6Mn, 0.7Mg, bal. Al, wt....
The reinforcement agglomeration in nanocomposites is a key issue that needs to be solved in order to...
In this study, Al-Al2O3 nanocomposite powders containing 5, 10 and 15 Wt% of nanopowder were produ...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
Metal matrix nanocomposites are advanced materials developed using ceramic nanoreinforcements and na...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
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 ...
We report a study of the structure-processing-property relationships in a high strength Al93Fe3Cr2Ti...
We report a study of the structure-processing-property relationships in a high strength Al93Fe3Cr2Ti...
Composites based on the nanocrystalline aluminum alloy EN AW-2017 (3.9Cu, 0.6Mn, 0.7Mg, bal. Al, wt....
Composites based on the nanocrystalline aluminum alloy EN AW-2017 (3.9Cu, 0.6Mn, 0.7Mg, bal. Al, wt....
The reinforcement agglomeration in nanocomposites is a key issue that needs to be solved in order to...
In this study, Al-Al2O3 nanocomposite powders containing 5, 10 and 15 Wt% of nanopowder were produ...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
Metal matrix nanocomposites are advanced materials developed using ceramic nanoreinforcements and na...