High-energy milling was used for production of Cu-Al2O3 composites. The inert gas-atomized prealloyed copper powder containing 2 wt.%Al and the mixture of the different sized electrolytic copper powders with 4 wt.% commercial Al2O3 powders served as starting materials. Milling of prealloyed copper powders promotes formation of nano-sized Al2O3 particles by internal oxidation with oxygen from air. Hot-pressed compacts of composites obtained from 5 and 20 h milled powders were additionally subjected to the high-temperature exposure in argon at 800 degrees C for 1 and 5 h. Characterization of processed material was performed by optical and scanning electron microscopy (SEM), X-ray diffraction analysis (XRD), microhardness, as well as density a...
Copper matrix was simultaneously reinforced with nano- and micro-sized Al2O3 particles via high-ener...
Cu-1 wt% Al(2)0(3) nano-composites were prepared by three different methods, namely mechanical alloy...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
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 ...
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 ...
Copper-based composites strengthened by nano- and micro-sized alumina particles were fabricated by i...
Copper-based composites strengthened by nano- and micro-sized alumina particles were fabricated by i...
The effect of the simultaneous presence of nano- and micro-sized Al2O3 particles on the microstructu...
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 objective of the work is to study the effects of the high-energy milling on strengthening, therm...
The objective of the work is to study the effects of the high-energy milling on strengthening, therm...
Copper matrix was simultaneously reinforced with nano- and micro-sized Al2O3 particles via high-ener...
Cu-1 wt% Al(2)0(3) nano-composites were prepared by three different methods, namely mechanical alloy...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
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 ...
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 ...
Copper-based composites strengthened by nano- and micro-sized alumina particles were fabricated by i...
Copper-based composites strengthened by nano- and micro-sized alumina particles were fabricated by i...
The effect of the simultaneous presence of nano- and micro-sized Al2O3 particles on the microstructu...
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 objective of the work is to study the effects of the high-energy milling on strengthening, therm...
The objective of the work is to study the effects of the high-energy milling on strengthening, therm...
Copper matrix was simultaneously reinforced with nano- and micro-sized Al2O3 particles via high-ener...
Cu-1 wt% Al(2)0(3) nano-composites were prepared by three different methods, namely mechanical alloy...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...