Lump-free Ni-5 wt% Al alloy powder was successfully prepared using an AlCl3 activator at 400 degrees C under vacuum. The AlCl3 activator served as the catalyst, lowering the fabrication temperature by 1000 degrees C compared with the temperature required for the conventional process. The Ni-Al alloy was formed by the following steps: the formation of NiAl by the reaction of the Ni surface with AlCl2 or AlCl produced by the reaction between Al and AlCl3, the formation of Ni3Al by Al diffusion and reaction, and the formation of a Ni-Al solid solution by Al diffusion into the Ni matrix until the solubility limitation was reached. Although lowering the alloying temperature lengthens the reaction time, the time could be reduced by controlling th...
Molten carbonate fuel cells (MCFC) are considered as the second generation fuel cell technology. The...
The NiAl intermetallic compounds have higher service temperature and lower density than traditional ...
Aiming at the development of a less energy-consumptive process for producing hydrogen storage materi...
Several Al–Ni alloys containing 20 to 80 at% nickel are produced from a mixture of aluminum and nick...
Lightweight alloys have great importance for car manufacturers that aim to produce safer, lighter, a...
In this work, the experimental results obtained during the preparation of Al-Ni and Al-Ni-Mg alloys ...
A novel method for padding, welding and freeform fabrication of intermetallic alloys based on an exo...
A novel synthesis process combining arc melting and rapid quenched system has been developed to manu...
The synthesis of micro-sized, uniformly distributed Al2O3-15Vol% Ni powders were studied through thr...
Two different methods were utilized to synthesize intermetallic nickel aluminide alloy. The first me...
The Al-Ni system is known as a high energy density materials (HEDM) because of its highly exothermic...
In this study, aluminum powder with 15 mu m size and carbonyl-nickel powder with 4-7 mu m size havin...
The use of thermal barrier coating systems allows superalloys to withstand higher operating temperat...
International audienceIn this paper we describe the alloying process of ultra-thin Al layers (below ...
Two-phase (B2 + L1(2)) nickel aluminide intermetallic compounds were synthesized by the pressure-ass...
Molten carbonate fuel cells (MCFC) are considered as the second generation fuel cell technology. The...
The NiAl intermetallic compounds have higher service temperature and lower density than traditional ...
Aiming at the development of a less energy-consumptive process for producing hydrogen storage materi...
Several Al–Ni alloys containing 20 to 80 at% nickel are produced from a mixture of aluminum and nick...
Lightweight alloys have great importance for car manufacturers that aim to produce safer, lighter, a...
In this work, the experimental results obtained during the preparation of Al-Ni and Al-Ni-Mg alloys ...
A novel method for padding, welding and freeform fabrication of intermetallic alloys based on an exo...
A novel synthesis process combining arc melting and rapid quenched system has been developed to manu...
The synthesis of micro-sized, uniformly distributed Al2O3-15Vol% Ni powders were studied through thr...
Two different methods were utilized to synthesize intermetallic nickel aluminide alloy. The first me...
The Al-Ni system is known as a high energy density materials (HEDM) because of its highly exothermic...
In this study, aluminum powder with 15 mu m size and carbonyl-nickel powder with 4-7 mu m size havin...
The use of thermal barrier coating systems allows superalloys to withstand higher operating temperat...
International audienceIn this paper we describe the alloying process of ultra-thin Al layers (below ...
Two-phase (B2 + L1(2)) nickel aluminide intermetallic compounds were synthesized by the pressure-ass...
Molten carbonate fuel cells (MCFC) are considered as the second generation fuel cell technology. The...
The NiAl intermetallic compounds have higher service temperature and lower density than traditional ...
Aiming at the development of a less energy-consumptive process for producing hydrogen storage materi...