Pure Cu was processed by ECAP at five different temperatures from room temperature (RT) to 523 K. The influence of pressing temperature on microstructure evolution and tensile behavior was investigated in detail. The results show that as the ECAP temperature is increased the grain size and ductility both increase whereas the dislocation density and yield strength decrease. In the case of ECAP processing in the range of RT to 473 K the mechanism governing microstructural refinement is continuous dynamic recrystallization (CDRX), whereas at 523 K the mechanism changes to discontinuous dynamic recrystallization (DDRX). At higher ECAP temperatures, the kinetics of CDRX are retarded leading to a lower fraction of equiaxed grains/high-angle grain...
This thesis presents a study on the microstructural evolution and mechanical properties of oxygen-fr...
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...
The creep behavior of pure, initially coarse-grained Cu of 99.99 purity was investigated at a temper...
The creep behavior of pure, initially coarse-grained Cu of 99.99 purity was investigated at a temper...
Oxygen-free copper was processed by equal-channel angular pressing (ECAP) at room temperature for 1,...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
Ultrafine grain of pure copper 99.98% was produced by severe plastic deformation using the equalcha...
Ultrafine grain of pure copper 99.98% was produced by severe plastic deformation using the equalchan...
Samples of electrolytic tough pitch (ETP) pure copper were subjected to 12 passes of Equal-Channel A...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
This paper investigates the microstructural evolution and grain refinement kinetics of a solution-tr...
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...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
This thesis presents a study on the microstructural evolution and mechanical properties of oxygen-fr...
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...
The creep behavior of pure, initially coarse-grained Cu of 99.99 purity was investigated at a temper...
The creep behavior of pure, initially coarse-grained Cu of 99.99 purity was investigated at a temper...
Oxygen-free copper was processed by equal-channel angular pressing (ECAP) at room temperature for 1,...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
Ultrafine grain of pure copper 99.98% was produced by severe plastic deformation using the equalcha...
Ultrafine grain of pure copper 99.98% was produced by severe plastic deformation using the equalchan...
Samples of electrolytic tough pitch (ETP) pure copper were subjected to 12 passes of Equal-Channel A...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
This paper investigates the microstructural evolution and grain refinement kinetics of a solution-tr...
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...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
This thesis presents a study on the microstructural evolution and mechanical properties of oxygen-fr...
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...