The microstructural and morphological changes of inert gas atomized pre-alloyed Cu-1 wt. % A1 powders subjected to hith-energy milling were studied. The microhardness of hot-pressed compacts was measured as a function of milling time. The thermal stability during exposure at 800 degrees C and the electrical conductivity of compacts were also examined. During the high-energy milling, severe deformation led to refinement of the powder particle grain size (from 550 nm to about 55 nm) and a decrease in the lattice parameter (0.10%), indicating precipitation of aluminium from the copper matrix. The microhardness of compacts obtained from 5. h-milled powders was 2160 MPa. After exposure at 800 degrees C for 5 h, these compacts still exhibited a h...
Electrolytic copper powder, inert gas atomized prealloyed copper powder containing 3.5 wt.% Al, and ...
The powder Cu-Al2O3 composites were produced by high-energy milling. Various combinations of particl...
The powder Cu-Al2O3 composites were produced by high-energy milling. Various combinations of particl...
The microstructural and morphological changes of inert gas atomized pre-alloyed Cu-1 wt. % A1 powder...
The microstructural and morphological changes of inert gas atomized pre-alloyed Cu-1 wt. % Al powder...
The inert gas atomised prealloyed copper powders containing 3.5 wt.% Al were milled up to 20 h in th...
The inert gas atomised prealloyed copper powders containing 3.5 wt.% Al were milled up to 20 h in th...
The prealloyed copper powders containing different amount of aluminium (1, 2.5 and 3.5 mass.%) were ...
The prealloyed copper powders containing different amount of aluminium (1, 2.5 and 3.5 mass.%) were ...
Copper matrix was reinforced with Al2O3 particles of different size and amount by internal oxidation...
Copper matrix was reinforced with Al2O3 particles of different size and amount by internal oxidation...
Inert gas atomized prealloyed copper powder containing 2 wt.% Al (average particle size approximate ...
Prealloyed copper powder containing 2.5wt. %Al was processed in a planetary ball mill to evaluate ma...
Prealloyed copper powder containing 2.5wt. %Al was processed in a planetary ball mill to evaluate ma...
High-energy milling was used for production of Cu-Al2O3 composites. The inert gas-atomized prealloye...
Electrolytic copper powder, inert gas atomized prealloyed copper powder containing 3.5 wt.% Al, and ...
The powder Cu-Al2O3 composites were produced by high-energy milling. Various combinations of particl...
The powder Cu-Al2O3 composites were produced by high-energy milling. Various combinations of particl...
The microstructural and morphological changes of inert gas atomized pre-alloyed Cu-1 wt. % A1 powder...
The microstructural and morphological changes of inert gas atomized pre-alloyed Cu-1 wt. % Al powder...
The inert gas atomised prealloyed copper powders containing 3.5 wt.% Al were milled up to 20 h in th...
The inert gas atomised prealloyed copper powders containing 3.5 wt.% Al were milled up to 20 h in th...
The prealloyed copper powders containing different amount of aluminium (1, 2.5 and 3.5 mass.%) were ...
The prealloyed copper powders containing different amount of aluminium (1, 2.5 and 3.5 mass.%) were ...
Copper matrix was reinforced with Al2O3 particles of different size and amount by internal oxidation...
Copper matrix was reinforced with Al2O3 particles of different size and amount by internal oxidation...
Inert gas atomized prealloyed copper powder containing 2 wt.% Al (average particle size approximate ...
Prealloyed copper powder containing 2.5wt. %Al was processed in a planetary ball mill to evaluate ma...
Prealloyed copper powder containing 2.5wt. %Al was processed in a planetary ball mill to evaluate ma...
High-energy milling was used for production of Cu-Al2O3 composites. The inert gas-atomized prealloye...
Electrolytic copper powder, inert gas atomized prealloyed copper powder containing 3.5 wt.% Al, and ...
The powder Cu-Al2O3 composites were produced by high-energy milling. Various combinations of particl...
The powder Cu-Al2O3 composites were produced by high-energy milling. Various combinations of particl...