Samples of pure Cu, bronze (Cu–10 wt.% Zn) and brass (Cu–30 wt.% Zn) with stacking fault energies (SFE) of 78, 35, and 14 mJ/m2, respectively, were processed by high-pressure torsion (HPT) and by a combination of HPT followed by cold-rolling (CR). X-ray diffraction measurements indicate that a decrease in SFE leads both to a decrease in crystallite size and to increases in microstrain, dislocation and twin densities for the HPT and HPT + CR processed ultrafine-grained (UFG) samples. Compared with processing by HPT, subsequent processing by CR refines the crystallite size of all samples, increases the twin densities of UFG bronze and brass, and increases the dislocation density in UFG bronze. It also decreases the dislocation density in UFG ...
The effects of stacking fault energy (SFE) and severe plastic deformation on the strength and ductil...
X-ray study of copper-nickel alloys pulverized by a ball mill and a stamp mill was carried out. Line...
Copper-zinc alloys with different zinc contents contain different stacking fault energies (SFE). The...
Experiments were conducted on samples of pure Cu and two Cu–Zn alloys to evaluate the influence of t...
399-406The effects of stacking fault energy (SFE) on the deformation mechanisms and mechanical prop...
A recent model developed to predict the smallest grain sizes obtainable by severe plastic deformatio...
The effect of stacking fault energy (SFE) and strain rate on the mechanical properties of Cu, Cu-10 ...
Bulk ultrafine grained (UFG) materials produced by severe plastic deformation often have low ductili...
Bulk ultrafine-grained (UFG) materials produced by severe plastic deformation (SPD) often have low d...
Cu-Ge alloys with different stacking fault energies (SFEs) were prepared by induction melting and pr...
Copper, bronze (Cu–10 wt.% Zn) and brass (Cu–30 wt.% Zn) were deformed by high pressure torsion (HPT...
Disks of pure Cu and several Cu–Al alloys were processed by high-pressure torsion (HPT) at room temp...
Cu and Cu-Al alloys with different stacking fault energies (SFEs) were processed using rolling and t...
Pure Cu, Cu-5 at%Al, Cu-10 at%Al and Cu-15 at%Al with different stacking fault energy (SFE) of 78, 3...
High-pressure torsion (HPT) was applied to unmilled coarse-grained (CG) Cu powders with low initial ...
The effects of stacking fault energy (SFE) and severe plastic deformation on the strength and ductil...
X-ray study of copper-nickel alloys pulverized by a ball mill and a stamp mill was carried out. Line...
Copper-zinc alloys with different zinc contents contain different stacking fault energies (SFE). The...
Experiments were conducted on samples of pure Cu and two Cu–Zn alloys to evaluate the influence of t...
399-406The effects of stacking fault energy (SFE) on the deformation mechanisms and mechanical prop...
A recent model developed to predict the smallest grain sizes obtainable by severe plastic deformatio...
The effect of stacking fault energy (SFE) and strain rate on the mechanical properties of Cu, Cu-10 ...
Bulk ultrafine grained (UFG) materials produced by severe plastic deformation often have low ductili...
Bulk ultrafine-grained (UFG) materials produced by severe plastic deformation (SPD) often have low d...
Cu-Ge alloys with different stacking fault energies (SFEs) were prepared by induction melting and pr...
Copper, bronze (Cu–10 wt.% Zn) and brass (Cu–30 wt.% Zn) were deformed by high pressure torsion (HPT...
Disks of pure Cu and several Cu–Al alloys were processed by high-pressure torsion (HPT) at room temp...
Cu and Cu-Al alloys with different stacking fault energies (SFEs) were processed using rolling and t...
Pure Cu, Cu-5 at%Al, Cu-10 at%Al and Cu-15 at%Al with different stacking fault energy (SFE) of 78, 3...
High-pressure torsion (HPT) was applied to unmilled coarse-grained (CG) Cu powders with low initial ...
The effects of stacking fault energy (SFE) and severe plastic deformation on the strength and ductil...
X-ray study of copper-nickel alloys pulverized by a ball mill and a stamp mill was carried out. Line...
Copper-zinc alloys with different zinc contents contain different stacking fault energies (SFE). The...