Nanocrystalline microstructures with a high fraction of intermetallic phases were synthesized in a series of Al based systems, Al-X-Zr (X=Si, Cu, Ni) by using rapid solidification processing. The intermetallic phases and the nano scaled grains both contribute to the very high hardness values, up to 5 GPa, for the as melt spun ternary alloys. The ternary Zr additions were found to achieve an increase in the hardness at least two times that of the corresponding binary eutectics, and nearly five times that of coarse grained Al. Several mechanisms of strengthening tend to operate simultaneously in such multiphase fine grained materials. An estimate of the different contributions to the strength via an analysis of their hardness, reveals that th...
The paper reports a detailed investigation on the microstructure evolution during rapid solidificati...
High-strength powder metallurgy (P/M) aluminum alloys were produced through crystallizing amorphous ...
The effect of Zr addition to Al rich binary α-Al - Al 3 Ni eutectic cast alloy (Al-3.1 at. Ni) in e...
Nanocrystalline microstructures with a high fraction of intermetallic phases were synthesized in a s...
Nanocrystalline microstructures were synthesised in the Al–Si–Zr system, by using a combination of r...
Rapid solidification of a ternary Al-Cu-Zr alloy results in a nanocomposite microstructure. In this ...
An investigation of the mechanical properties of nanocrystalline Al-Zr alloy composites has been con...
A major difference between coarse-grained materials and nanocrystalline materials is the volume frac...
Al-based binary (Al-Mg) and ternary (Al-Mg-Zr) elemental powder mixtures were mechanically alloyed t...
Al-based binary (Al-Mg) and ternary (Al-Mg-Zr) elemental powder mixtures were mechanically alloyed t...
Three different processing routes were explored to develop Al-Zr nanocomposite alloys using mechanic...
Three different processing routes were explored to develop Al-Zr nanocomposite alloys using mechanic...
We report here successful synthesis of Al-based nanocomposites with L12–Al3Ti particles in binary Al...
Nanocrystalline L1<sub>2</sub>-Al<sub>3</sub> (Ti, Zr) intermetallic has been synthesized directly b...
We report here successful synthesis of Al-based nanocomposites with L12-Al3Ti particles in binary Al...
The paper reports a detailed investigation on the microstructure evolution during rapid solidificati...
High-strength powder metallurgy (P/M) aluminum alloys were produced through crystallizing amorphous ...
The effect of Zr addition to Al rich binary α-Al - Al 3 Ni eutectic cast alloy (Al-3.1 at. Ni) in e...
Nanocrystalline microstructures with a high fraction of intermetallic phases were synthesized in a s...
Nanocrystalline microstructures were synthesised in the Al–Si–Zr system, by using a combination of r...
Rapid solidification of a ternary Al-Cu-Zr alloy results in a nanocomposite microstructure. In this ...
An investigation of the mechanical properties of nanocrystalline Al-Zr alloy composites has been con...
A major difference between coarse-grained materials and nanocrystalline materials is the volume frac...
Al-based binary (Al-Mg) and ternary (Al-Mg-Zr) elemental powder mixtures were mechanically alloyed t...
Al-based binary (Al-Mg) and ternary (Al-Mg-Zr) elemental powder mixtures were mechanically alloyed t...
Three different processing routes were explored to develop Al-Zr nanocomposite alloys using mechanic...
Three different processing routes were explored to develop Al-Zr nanocomposite alloys using mechanic...
We report here successful synthesis of Al-based nanocomposites with L12–Al3Ti particles in binary Al...
Nanocrystalline L1<sub>2</sub>-Al<sub>3</sub> (Ti, Zr) intermetallic has been synthesized directly b...
We report here successful synthesis of Al-based nanocomposites with L12-Al3Ti particles in binary Al...
The paper reports a detailed investigation on the microstructure evolution during rapid solidificati...
High-strength powder metallurgy (P/M) aluminum alloys were produced through crystallizing amorphous ...
The effect of Zr addition to Al rich binary α-Al - Al 3 Ni eutectic cast alloy (Al-3.1 at. Ni) in e...