Nanostructured Cu-7.5vol.%Al₂O₃ composite powders were produced from a mixture of Cu powder and Al₂O₃ nanopowder using two routes of high energy mechanical milling. The milled composite powders were heat treated at 150, 300, 400 and 500°C for 1 hour, respectively, to determine the thermal stability of the microstructure and corresponding micohardness change of the powder particles as a function of the annealing temperature. For the nanocomposite powder produced with 12 hours of milling (Route 1), heat treatment at 150°C did not change the microstructure, increasing the annealing temperature from 150 to 500°C caused the Cu grain sizes to increase due to grain coarsening. For the composite powder produced with 24 hours milling (Route 2), the...
The microstructures and tensile properties of two ultrafine structured Cu–5vol%Al₂O₃ nanocomposite s...
Ultrafine grained and/or nanostructured Cu and Cu-(2.5-10)vol.%Al2O3 composite balls/granules/powder...
Abstract Cu grain growth, Al2O3 nanoparticle coarsening and changes in microhardness of an ultrafine...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
High energy mechanical milling (HEMM) of a mixture of Cu powder and Al₂O₃ nanopowder has been used t...
High energy mechanical milling (HEMM) of a mixture of Cu powder and Al₂O₃ nanopowder has been used t...
High energy mechanical milling (HEMM) of a mixture of Cu powder and Al₂O₃ nanopowder has been used t...
Cu-10vol.%Al₂O₃ nanocomposite powders were produced using two high energy milling routes and heat tr...
Cu-10vol.%Al₂O₃ nanocomposite powders were produced using two high energy milling routes and heat tr...
Cu-10vol.%Al₂O₃ nanocomposite powders were produced using two high energy milling routes and heat tr...
Ultrafine grained and/or nanostructured Cu and Cu-(2.5-10)vol.%Al2O3 composite balls/granules/powder...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
The microstructures and tensile properties of two ultrafine structured Cu–5vol%Al₂O₃ nanocomposite s...
The microstructures and tensile properties of two ultrafine structured Cu–5vol%Al₂O₃ nanocomposite s...
Ultrafine grained and/or nanostructured Cu and Cu-(2.5-10)vol.%Al2O3 composite balls/granules/powder...
Abstract Cu grain growth, Al2O3 nanoparticle coarsening and changes in microhardness of an ultrafine...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
High energy mechanical milling (HEMM) of a mixture of Cu powder and Al₂O₃ nanopowder has been used t...
High energy mechanical milling (HEMM) of a mixture of Cu powder and Al₂O₃ nanopowder has been used t...
High energy mechanical milling (HEMM) of a mixture of Cu powder and Al₂O₃ nanopowder has been used t...
Cu-10vol.%Al₂O₃ nanocomposite powders were produced using two high energy milling routes and heat tr...
Cu-10vol.%Al₂O₃ nanocomposite powders were produced using two high energy milling routes and heat tr...
Cu-10vol.%Al₂O₃ nanocomposite powders were produced using two high energy milling routes and heat tr...
Ultrafine grained and/or nanostructured Cu and Cu-(2.5-10)vol.%Al2O3 composite balls/granules/powder...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
The microstructures and tensile properties of two ultrafine structured Cu–5vol%Al₂O₃ nanocomposite s...
The microstructures and tensile properties of two ultrafine structured Cu–5vol%Al₂O₃ nanocomposite s...
Ultrafine grained and/or nanostructured Cu and Cu-(2.5-10)vol.%Al2O3 composite balls/granules/powder...
Abstract Cu grain growth, Al2O3 nanoparticle coarsening and changes in microhardness of an ultrafine...