Two mechanisms for deformation-induced grain growth in nanostructured metals have been proposed, including grain rotation-induced grain coalescence and stress-coupled grain boundary (GB) migration. A study is reported in which significant grain growth occurred from an average grain size of 46 nm to 90 nm during high pressure torsion (HPT) of cryomilled nanocrystalline Cu powders. Careful microstructural examination ascertained that grain rotation-induced grain coalescence is mainly responsible for the grain growth during HPT. Furthermore, a grain size dependence of the grain growth mechanisms was uncovered: grain rotation and grain coalescence dominate at nanocrystalline grain sizes, whereas stress-coupled GB migration prevails at ultrafine...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
The grain boundary network of nanocrystalline Cu foils was modified by the application of cyclic loa...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
High-pressure torsion (HPT) was applied to unmilled coarse-grained (CG) Cu powders with low initial ...
Deformation-induced grain growth has been reported in nanocrystalline (nc) materials under indentati...
The structural evolution of a nanocrystalline Ni–Fe alloy induced by high-pressure torsion (HPT) was...
Grain boundaries play an important role in dictating the mechanical and physical properties of nanoc...
Copper, bronze (Cu–10 wt.% Zn) and brass (Cu–30 wt.% Zn) were deformed by high pressure torsion (HPT...
Both twinning and detwinning have been reported to occur during the deformation of nanocrystalline (...
An electrochemically deposited nanocrystalline supersaturated face-centred-cubic Ni–21 at.% Fe alloy...
Understanding the mechanical behaviour of metallic nanostructures is a key issue for their developme...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
Cu samples were subjected to high-pressure torsion (HPT) with up to 6 turns at room temperature (RT)...
DoctorNanocrystalline / ultra-fine grains materials have been a subject of extensive research over t...
Deformation twins and stacking faults were observed in nanostructure Al-Mg alloys subjected to high ...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
The grain boundary network of nanocrystalline Cu foils was modified by the application of cyclic loa...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
High-pressure torsion (HPT) was applied to unmilled coarse-grained (CG) Cu powders with low initial ...
Deformation-induced grain growth has been reported in nanocrystalline (nc) materials under indentati...
The structural evolution of a nanocrystalline Ni–Fe alloy induced by high-pressure torsion (HPT) was...
Grain boundaries play an important role in dictating the mechanical and physical properties of nanoc...
Copper, bronze (Cu–10 wt.% Zn) and brass (Cu–30 wt.% Zn) were deformed by high pressure torsion (HPT...
Both twinning and detwinning have been reported to occur during the deformation of nanocrystalline (...
An electrochemically deposited nanocrystalline supersaturated face-centred-cubic Ni–21 at.% Fe alloy...
Understanding the mechanical behaviour of metallic nanostructures is a key issue for their developme...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
Cu samples were subjected to high-pressure torsion (HPT) with up to 6 turns at room temperature (RT)...
DoctorNanocrystalline / ultra-fine grains materials have been a subject of extensive research over t...
Deformation twins and stacking faults were observed in nanostructure Al-Mg alloys subjected to high ...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
The grain boundary network of nanocrystalline Cu foils was modified by the application of cyclic loa...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...