In this paper, the thermal stability and grain growth kinetics of nanocrystalline Cu, reinforced with SiC nanoparticles and obtained using a mechanical milling process, were investigated during isothermal annealing. The presence of the nanoparticles in the nanocrystalline copper matrix resulted in a significant decrease in grain growth, the formation of partially textured microstructure and twin boundaries at higher temperatures, and an increase in the volume fraction of recrystallized grains, as estimated by grain orientation spread, in comparison to unreinforced Cu during annealing. The lower volume fraction of recrystallized grains at higher temperatures was attributed to dynamic recovery. Normal grain growth was observed in the annealin...
Nanostructured Cu-7.5vol.%Al₂O₃ composite powders were produced from a mixture of Cu powder and Al₂O...
Polycrystalline materials having an ultrafine grain size may be prepared by mechanical alloying. Suc...
Nanocrystalline copper lms were created by both repetitive high-energy pulsed power, to produce mate...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
The grain growth kinetics of nanocrystalline copper thin film samples was investigated. The grain si...
The objective of this work is to investigate the microstrain effect on grain growth and strain relea...
Nanocrystalline Cu powders with a grain size of about 32 nm have been successfully synthesized using...
Copper is a widely used conductor in the manufacture of printed wiring boards (PWB). The trends in m...
Cu/SiC nanocomposite powders with homogeneously distributed nanosize SiC particles were produced by ...
This article presents a method for the sample preparation and characterisation of bulk copper having...
High density grain boundaries provide high strength, but may introduce undesirable features, such as...
Understanding the mechanical behaviour of metallic nanostructures is a key issue for their developme...
Abstract Cu grain growth, Al2O3 nanoparticle coarsening and changes in microhardness of an ultrafine...
A study on the kinetics of grain growth of an Mg-12.1 wt%Cu alloy produced by mechanical alloying wa...
The microstructure, hardness evolution, and thermal stability of mechanically alloyed (MA-ed) nanocr...
Nanostructured Cu-7.5vol.%Al₂O₃ composite powders were produced from a mixture of Cu powder and Al₂O...
Polycrystalline materials having an ultrafine grain size may be prepared by mechanical alloying. Suc...
Nanocrystalline copper lms were created by both repetitive high-energy pulsed power, to produce mate...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
The grain growth kinetics of nanocrystalline copper thin film samples was investigated. The grain si...
The objective of this work is to investigate the microstrain effect on grain growth and strain relea...
Nanocrystalline Cu powders with a grain size of about 32 nm have been successfully synthesized using...
Copper is a widely used conductor in the manufacture of printed wiring boards (PWB). The trends in m...
Cu/SiC nanocomposite powders with homogeneously distributed nanosize SiC particles were produced by ...
This article presents a method for the sample preparation and characterisation of bulk copper having...
High density grain boundaries provide high strength, but may introduce undesirable features, such as...
Understanding the mechanical behaviour of metallic nanostructures is a key issue for their developme...
Abstract Cu grain growth, Al2O3 nanoparticle coarsening and changes in microhardness of an ultrafine...
A study on the kinetics of grain growth of an Mg-12.1 wt%Cu alloy produced by mechanical alloying wa...
The microstructure, hardness evolution, and thermal stability of mechanically alloyed (MA-ed) nanocr...
Nanostructured Cu-7.5vol.%Al₂O₃ composite powders were produced from a mixture of Cu powder and Al₂O...
Polycrystalline materials having an ultrafine grain size may be prepared by mechanical alloying. Suc...
Nanocrystalline copper lms were created by both repetitive high-energy pulsed power, to produce mate...