Abstract:This Paper investigated effects of annealing and age hardening on the ultimate tensile strength (UTS) and electrical conductivity of aluminium-nickel cast using sand mould. Pure aluminium melt was alloyed with nickel, which was added in 2 % to 10 % step 2. Annealing and age hardenings were carried out and obtained results showed that Al-2%Ni alloy has the highest UTS of 604.44MPa. On the other hand, Al-6%Ni Annealed alloy has the highest electrical conductivity, with a value of 6.15 × 10 7 S/m. The Al-4%Ni alloy combined both high strength and conductivity, having UTS of 603.28MPa and electrical conductivity of 5.69 × 1
The mechanical strength and electrical conductivity (EC) in Al–Mg–Si 6xxx conductor alloys are key c...
In the last years, aluminium producers have reported increasing Ni concentrations in primary alumini...
Most alloys employed in the fabrication of metal-based heating elements are known to be plagued by l...
The present investigation deals with a comprehensive study on the production of aluminum based alloy...
Newly developed high conductivity Al-Fe-Ni alloys are expected to be used for various electronic and...
Aluminum-Nickel alloys ranging from 0.06 pct to 6.1 pct (by wt) Ni have been developed for high stre...
The electrical conductivity (EC), mechanical strength, hot tearing susceptibility (HTS), and related...
Aluminum alloys are one of the most popular casting materials. Their enormous popularity due to a wi...
The 6000 series alloys belong to the group of aluminium alloys that contain magnesium and silicon as...
The microstructural, electrical and mechanical characteristics of conventionally and rapidly solidif...
Aluminium and its alloys are used in all bare overhead energy transmission lines. Researchers and ma...
Experiments have been conducted to investigate the effect of the degree of plastic deformation on th...
In this study, the tensile properties of unmodified A356 alloys with trace additions of Ni or V were ...
High-temperature tensile properties of unmodified A356 alloy with and without the addition of Ni or ...
This paper presents the effect of deformation on the tensile strength, toughness, hardness and elect...
The mechanical strength and electrical conductivity (EC) in Al–Mg–Si 6xxx conductor alloys are key c...
In the last years, aluminium producers have reported increasing Ni concentrations in primary alumini...
Most alloys employed in the fabrication of metal-based heating elements are known to be plagued by l...
The present investigation deals with a comprehensive study on the production of aluminum based alloy...
Newly developed high conductivity Al-Fe-Ni alloys are expected to be used for various electronic and...
Aluminum-Nickel alloys ranging from 0.06 pct to 6.1 pct (by wt) Ni have been developed for high stre...
The electrical conductivity (EC), mechanical strength, hot tearing susceptibility (HTS), and related...
Aluminum alloys are one of the most popular casting materials. Their enormous popularity due to a wi...
The 6000 series alloys belong to the group of aluminium alloys that contain magnesium and silicon as...
The microstructural, electrical and mechanical characteristics of conventionally and rapidly solidif...
Aluminium and its alloys are used in all bare overhead energy transmission lines. Researchers and ma...
Experiments have been conducted to investigate the effect of the degree of plastic deformation on th...
In this study, the tensile properties of unmodified A356 alloys with trace additions of Ni or V were ...
High-temperature tensile properties of unmodified A356 alloy with and without the addition of Ni or ...
This paper presents the effect of deformation on the tensile strength, toughness, hardness and elect...
The mechanical strength and electrical conductivity (EC) in Al–Mg–Si 6xxx conductor alloys are key c...
In the last years, aluminium producers have reported increasing Ni concentrations in primary alumini...
Most alloys employed in the fabrication of metal-based heating elements are known to be plagued by l...