Nanocrystalline L1<sub>2</sub>-Al<sub>3</sub> (Ti, Zr) intermetallic has been synthesized directly by mechanical alloying of elemental blends of the nominal composition Al<sub>75</sub>(Ti<sub>25−x</sub>Zr<sub>x</sub>) for x = 0, 5, 10, 15, 20 and 25. The long range order parameter is found to increase with the Zr content. The lattice parameter difference between the L1<sub>2</sub>-Al<sub>3</sub> (Ti, Zr) and Al was minimum for the alloy with 10% Zr. A very high hardness of 3.23 GPa was achieved for the L1<sub>2</sub> phase in the Al<sub>75</sub>Ti<sub>15</sub>Zr<sub>10</sub> composition in the green compact condition with a relative density of 77.6%
The effects of combined Ti and Zr addition on microstructures and mechanical properties are systemat...
High-strength powder metallurgy (P/M) aluminum alloys were produced through crystallizing amorphous ...
Three different processing routes were explored to develop Al-Zr nanocomposite alloys using mechanic...
The present paper reports the synthesis of nanocrystalline L1<SUB>2</SUB>-Al<SUB>3</SUB>Ti by mechan...
The paper reports the synthesis of nanocrystalline Li2-Al3Ti and Al3Zr by mechanical alloying of ele...
The present paper reports the formation of nanocomposites containing α-Al and L12-Al3Ti in binary Al...
The present paper reports the formation of nanocomposites containing α-Al and L12–Al3Ti in bina...
We report here successful synthesis of Al-based nanocomposites with L1<SUB>2</SUB>-Al<SUB>3</SUB>Ti ...
The present paper reports the synthesis of nanocrystalline L12–Al3Ti by Mechanical Alloying (MA) of ...
We report here successful synthesis of Al-based nanocomposites with L12–Al3Ti particles in binary Al...
Nanocrystalline microstructures with a high fraction of intermetallic phases were synthesized in a s...
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...
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...
The effects of combined Ti and Zr addition on microstructures and mechanical properties are systemat...
High-strength powder metallurgy (P/M) aluminum alloys were produced through crystallizing amorphous ...
Three different processing routes were explored to develop Al-Zr nanocomposite alloys using mechanic...
The present paper reports the synthesis of nanocrystalline L1<SUB>2</SUB>-Al<SUB>3</SUB>Ti by mechan...
The paper reports the synthesis of nanocrystalline Li2-Al3Ti and Al3Zr by mechanical alloying of ele...
The present paper reports the formation of nanocomposites containing α-Al and L12-Al3Ti in binary Al...
The present paper reports the formation of nanocomposites containing α-Al and L12–Al3Ti in bina...
We report here successful synthesis of Al-based nanocomposites with L1<SUB>2</SUB>-Al<SUB>3</SUB>Ti ...
The present paper reports the synthesis of nanocrystalline L12–Al3Ti by Mechanical Alloying (MA) of ...
We report here successful synthesis of Al-based nanocomposites with L12–Al3Ti particles in binary Al...
Nanocrystalline microstructures with a high fraction of intermetallic phases were synthesized in a s...
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...
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...
The effects of combined Ti and Zr addition on microstructures and mechanical properties are systemat...
High-strength powder metallurgy (P/M) aluminum alloys were produced through crystallizing amorphous ...
Three different processing routes were explored to develop Al-Zr nanocomposite alloys using mechanic...