The process of dislocation structure evolution and nanocrystalline structure formation during high-energy mechanical milling (MM) was studied in Ni-Co alloys with different stacking fault energy (SFE). X-ray patterns were analysed to determine the lattice microstrain, average crystallite size, probability of the stacking faults and the lattice parameter. Comparison with some structural parameters during MM, allowed us to elucidate the sequence of events leading to the formation of a nanocrystalline structure. It was found that SFE is the key factor controlling the process of dynamic recovery. It significantly influences the kinetics of the nanocrystalline structure formation, as well as the steady state structural parameters observed at ver...
Nanocrystalline Cu(Fe) solid solution was successfully synthesized by using high-energy mechanical m...
A high-resolution electron microscopy study has uncovered the plastic behavior of accommodating larg...
The effect of stacking fault energy (SFE) on the mechanical properties was investigated in Ni–Co all...
The process of dislocation structure evolution and nanocrystalline structure formation during high-e...
The process of dislocation structure evolution and nanocrystalline structure formation during high-e...
Deformation mechanisms in nanocrystalline Ni-x wt% Co alloys (x = 0, 20, 40, 60), having stacking fa...
Nanocrystalline (nc) materials exhibit superior mechanical properties compared with coarse-grained m...
The structural evolution and the phase transformations occurred during milling process of Co 100-xCr...
Nanocrystalline Ni70Co30 alloy was synthesized by high energy ball alloying from elemental pure Ni a...
A transmission electron microscopy (TEM) study has been carried out to uncover how dislocations and ...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
Deformation twinning is evidenced by transmission electron microscopy examinations in electrodeposit...
In this letter, a conclusive evidence of the operation of planar slip along with grain boundary medi...
Effect of stacking fault energy (SFE) on microstructural and crystallographic aspect of high-velocit...
Nanocrystalline Cu(Fe) solid solution was successfully synthesized by using high-energy mechanical m...
A high-resolution electron microscopy study has uncovered the plastic behavior of accommodating larg...
The effect of stacking fault energy (SFE) on the mechanical properties was investigated in Ni–Co all...
The process of dislocation structure evolution and nanocrystalline structure formation during high-e...
The process of dislocation structure evolution and nanocrystalline structure formation during high-e...
Deformation mechanisms in nanocrystalline Ni-x wt% Co alloys (x = 0, 20, 40, 60), having stacking fa...
Nanocrystalline (nc) materials exhibit superior mechanical properties compared with coarse-grained m...
The structural evolution and the phase transformations occurred during milling process of Co 100-xCr...
Nanocrystalline Ni70Co30 alloy was synthesized by high energy ball alloying from elemental pure Ni a...
A transmission electron microscopy (TEM) study has been carried out to uncover how dislocations and ...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
Deformation twinning is evidenced by transmission electron microscopy examinations in electrodeposit...
In this letter, a conclusive evidence of the operation of planar slip along with grain boundary medi...
Effect of stacking fault energy (SFE) on microstructural and crystallographic aspect of high-velocit...
Nanocrystalline Cu(Fe) solid solution was successfully synthesized by using high-energy mechanical m...
A high-resolution electron microscopy study has uncovered the plastic behavior of accommodating larg...
The effect of stacking fault energy (SFE) on the mechanical properties was investigated in Ni–Co all...