Ultrafine grain of pure copper 99.98% was produced by severe plastic deformation using the equalchannel angular pressing (ECAP) method. Copper samples were ECAPed from 1 to 8 passes following route BC; fine grain sizes of 250 nm were developed after eight passes. Important enhancement in the mechanical strength properties was obtained. Subsequent heat treatments (HT) were carried out to evaluate the thermal stability of the grains of the ECAPed samples. Microstructure and mechanical properties were evaluated to determine the recovery and recrystallization temperatures. Differential scanning calorimetry (DSC) tests were conducted to all samples in order to determinate these temperatures. The activation energy of the recrystallization process...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
Samples of commercially pure copper (ETP copper) were subjected to equal-channel angular pressing (E...
Samples of commercially pure copper (ETP copper) were subjected to equal-channel angular pressing (E...
Ultrafine grain of pure copper 99.98% was produced by severe plastic deformation using the equalcha...
Oxygen-free copper was processed by equal-channel angular pressing (ECAP) at room temperature for 1,...
Pure Cu was processed by ECAP at five different temperatures from room temperature (RT) to 523 K. Th...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
In this article, commercially pure copper samples were severely deformed by equal channel angular pr...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Oxygen-free copper was processed by equal-channel angular pressing (ECAP) at room temperature for 1,...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
Substructural characteristics of Cu (99.97%) were examined after the Twist channel angular pressing ...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
Samples of commercially pure copper (ETP copper) were subjected to equal-channel angular pressing (E...
Samples of commercially pure copper (ETP copper) were subjected to equal-channel angular pressing (E...
Ultrafine grain of pure copper 99.98% was produced by severe plastic deformation using the equalcha...
Oxygen-free copper was processed by equal-channel angular pressing (ECAP) at room temperature for 1,...
Pure Cu was processed by ECAP at five different temperatures from room temperature (RT) to 523 K. Th...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
In this article, commercially pure copper samples were severely deformed by equal channel angular pr...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Oxygen-free copper was processed by equal-channel angular pressing (ECAP) at room temperature for 1,...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
Substructural characteristics of Cu (99.97%) were examined after the Twist channel angular pressing ...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
Samples of commercially pure copper (ETP copper) were subjected to equal-channel angular pressing (E...
Samples of commercially pure copper (ETP copper) were subjected to equal-channel angular pressing (E...