Pure Cu, Cu-5 at%Al, Cu-10 at%Al and Cu-15 at%Al with different stacking fault energy (SFE) of 78, 37, 7 and 5 mJ/m2, respectively, were processed through split Hopkinson pressure bar (SHPB) with the strain rate of 103/sec. The influence of high strain rate on the evolution of microstructures and mechanical properties of Cu and Cu–Al alloys was investigated. X-ray diffraction measurements indicate that, the microstructures of Cu and Cu–Al alloys have been refined to the nano scale after deformed by SHPB, and with decreasing SFE, the average grain size decreases gradually from 72 to 40 nm, while the dislocation density increases from 0.55×1014 to 4.4×1014 m−2 and the twin density increases from 0.04% to 1.07%. T...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolutions t...
Pure Cu of 99.98 wt.% purity has been processed at room temperature by diverse techniques of severe ...
This thesis presents a study on microstructural evolutions of an ultrafine-grained (UFG) Al-Cu-Mg al...
Pure Cu, Cu-5 at%Al, Cu-10 at%Al and Cu-15 at%Al with different stacking fault energy (SFE) of 78, 3...
Cu and Cu-Al alloys with different stacking fault energies (SFEs) were processed using rolling and t...
The effect of grain size and stacking fault energy (SFE) on the strain hardening rate behavior under...
The effect of stacking fault energy (SFE) on the mechanical properties of pure Cu and alloys of Cu-2...
The effect of stacking fault energy (SFE) and strain rate on the mechanical properties of Cu, Cu-10 ...
Cu-Ge alloys with different stacking fault energies (SFEs) were prepared by induction melting and pr...
AbstractCompression tests of Cu-2.2wt% Al, Cu-4.5 wt% Al and Cu-6.9 wt% Al with different stacking f...
The effects of stacking fault energy (SFE) and severe plastic deformation on the strength and ductil...
Disks of pure Cu and several Cu–Al alloys were processed by high-pressure torsion (HPT) at room temp...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolut...
399-406The effects of stacking fault energy (SFE) on the deformation mechanisms and mechanical prop...
Samples of pure Cu, bronze (Cu–10 wt.% Zn) and brass (Cu–30 wt.% Zn) with stacking fault energies (S...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolutions t...
Pure Cu of 99.98 wt.% purity has been processed at room temperature by diverse techniques of severe ...
This thesis presents a study on microstructural evolutions of an ultrafine-grained (UFG) Al-Cu-Mg al...
Pure Cu, Cu-5 at%Al, Cu-10 at%Al and Cu-15 at%Al with different stacking fault energy (SFE) of 78, 3...
Cu and Cu-Al alloys with different stacking fault energies (SFEs) were processed using rolling and t...
The effect of grain size and stacking fault energy (SFE) on the strain hardening rate behavior under...
The effect of stacking fault energy (SFE) on the mechanical properties of pure Cu and alloys of Cu-2...
The effect of stacking fault energy (SFE) and strain rate on the mechanical properties of Cu, Cu-10 ...
Cu-Ge alloys with different stacking fault energies (SFEs) were prepared by induction melting and pr...
AbstractCompression tests of Cu-2.2wt% Al, Cu-4.5 wt% Al and Cu-6.9 wt% Al with different stacking f...
The effects of stacking fault energy (SFE) and severe plastic deformation on the strength and ductil...
Disks of pure Cu and several Cu–Al alloys were processed by high-pressure torsion (HPT) at room temp...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolut...
399-406The effects of stacking fault energy (SFE) on the deformation mechanisms and mechanical prop...
Samples of pure Cu, bronze (Cu–10 wt.% Zn) and brass (Cu–30 wt.% Zn) with stacking fault energies (S...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolutions t...
Pure Cu of 99.98 wt.% purity has been processed at room temperature by diverse techniques of severe ...
This thesis presents a study on microstructural evolutions of an ultrafine-grained (UFG) Al-Cu-Mg al...