The grain growth kinetics of nanocrystalline copper thin film samples was investigated. The grain size of nanocrystalline copper samples was determined from the broadening of X-ray spectra. It was found that the grain size increased linearly with isothermal annealing time within the first 10 minutes, beyond which power-law growth kinetics is applied. The activation energy for grain growth was determined by constructing an Arrhenius plot, which shows an activation energy of about 21 – 30 kJ/mol. The low activation energy is attributed to the second phase particle drag and the porosity drag, which act as the pinning force for grain growth in nanocrystalline copper
The exceptional properties associated with nanocrystalline materials are to a large extent a result ...
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
The exceptional properties associated with nanocrystalline materials are, to a large extent, a resul...
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...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
In this paper, the thermal stability and grain growth kinetics of nanocrystalline Cu, reinforced wit...
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...
High density grain boundaries provide high strength, but may introduce undesirable features, such as...
Transmission electron microscopy (TEM) based orientation mapping has been used to measure the length...
Nanocrystalline copper lms were created by both repetitive high-energy pulsed power, to produce mate...
Transmission electron microscopy (TEM) based orientation mapping has been used to measure the length...
Grain refinement to the nanocrystalline scale is known to enhance physical properties as strength an...
Nanocrystalline metals generally exhibit exceptionally high strength. However, their susceptibility ...
The exceptional properties associated with nanocrystalline materials are to a large extent a result ...
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
The exceptional properties associated with nanocrystalline materials are, to a large extent, a resul...
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...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
In this paper, the thermal stability and grain growth kinetics of nanocrystalline Cu, reinforced wit...
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...
High density grain boundaries provide high strength, but may introduce undesirable features, such as...
Transmission electron microscopy (TEM) based orientation mapping has been used to measure the length...
Nanocrystalline copper lms were created by both repetitive high-energy pulsed power, to produce mate...
Transmission electron microscopy (TEM) based orientation mapping has been used to measure the length...
Grain refinement to the nanocrystalline scale is known to enhance physical properties as strength an...
Nanocrystalline metals generally exhibit exceptionally high strength. However, their susceptibility ...
The exceptional properties associated with nanocrystalline materials are to a large extent a result ...
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
The exceptional properties associated with nanocrystalline materials are, to a large extent, a resul...