Mechanical properties and microstructural evolution of Cu-10wt.%Zn and Cu-30wt.%Zn alloys after pre-torsional deformation have been investigated in this study. The results indicated that pre-torsional deformation can significantly enhance the strength of both Cu-10wt.%Zn and Cu-30wt.%Zn alloys without changing their shape and size, but with the sacrifice of the ductility. The pre-torsion deformation can introduce gradient hardness and microstructures along the radial direction, with the microstructures along the radial direction in Cu-30wt.%Zn alloy being "dislocations→stacking faults→twins (low density)". The stacking fault energy affects significantly the microstructure along the radial direction.</div
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolutions t...
High strain rate deformation behavior of Cu-10Zn alloy was studied. A weak texture with fine grain s...
Disks of pure Cu, Cu–10% Zn and Cu–30% Zn were processed by high-pressure torsion (HPT) and then exa...
Experiments were conducted on samples of pure Cu and two Cu–Zn alloys to evaluate the influence of t...
Experiments were conducted on a Cu–0.1% Zr alloy in order to examine the evolution of hardness and m...
A coarse-grained Cu–36Zn–2Pb alloy with an initial grain size of ~54 µm was processed by high-pressu...
The microstructure, texture and mechanical properties of a quasi-single-phase Zn-0.5Cu (wt. %) alloy...
Experiments were conducted on a Cu-0.1% Zr alloy in order to examine the evolution of hardness and m...
Copper-zinc alloys with different zinc contents contain different stacking fault energies (SFE). The...
The effect of stacking fault energy (SFE) and strain rate on the mechanical properties of Cu, Cu-10 ...
A recent model developed to predict the smallest grain sizes obtainable by severe plastic deformatio...
The effects of stacking fault energy (SFE) and severe plastic deformation on the strength and ductil...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolut...
Disks of a coarse-grained Cu–28 wt.% Ag alloy were processed by high-pressure torsion up to 20 revol...
For the purpose of designing high strength and high ductility Zn–Cu–Mg biodegradable alloys, this st...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolutions t...
High strain rate deformation behavior of Cu-10Zn alloy was studied. A weak texture with fine grain s...
Disks of pure Cu, Cu–10% Zn and Cu–30% Zn were processed by high-pressure torsion (HPT) and then exa...
Experiments were conducted on samples of pure Cu and two Cu–Zn alloys to evaluate the influence of t...
Experiments were conducted on a Cu–0.1% Zr alloy in order to examine the evolution of hardness and m...
A coarse-grained Cu–36Zn–2Pb alloy with an initial grain size of ~54 µm was processed by high-pressu...
The microstructure, texture and mechanical properties of a quasi-single-phase Zn-0.5Cu (wt. %) alloy...
Experiments were conducted on a Cu-0.1% Zr alloy in order to examine the evolution of hardness and m...
Copper-zinc alloys with different zinc contents contain different stacking fault energies (SFE). The...
The effect of stacking fault energy (SFE) and strain rate on the mechanical properties of Cu, Cu-10 ...
A recent model developed to predict the smallest grain sizes obtainable by severe plastic deformatio...
The effects of stacking fault energy (SFE) and severe plastic deformation on the strength and ductil...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolut...
Disks of a coarse-grained Cu–28 wt.% Ag alloy were processed by high-pressure torsion up to 20 revol...
For the purpose of designing high strength and high ductility Zn–Cu–Mg biodegradable alloys, this st...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolutions t...
High strain rate deformation behavior of Cu-10Zn alloy was studied. A weak texture with fine grain s...
Disks of pure Cu, Cu–10% Zn and Cu–30% Zn were processed by high-pressure torsion (HPT) and then exa...