The torsion of pristine α-Fe nanowires was studied by molecular dynamics simulations. Torsion-induced plastic deformation in pristine nanowires is divided into two regimes. Under weak torsion, plastic deformation leads to dislocation nucleation and propagation. Twisting-induced dislocations are mainly 12 screw dislocations in a -oriented nanowire. The nucleation and propagation of these dislocations were found to form avalanches which generate the emission of energy jerks. Their probability distribution function (PDF) showed power laws with mixing between different energy exponents. The mixing stemmed from simultaneous axial and radial dislocation movements. The power-law distribution indicated strongly correlated 'wild' dislocation dynamic...
Metallic nanowires (NWs) are essential building blocks for flexible electronics, and experience diff...
Leveraging defects is a cornerstone of materials science, and has become increasingly important from...
MasterNano-sized single crystals show significantly higher strength than that of bulk materials due ...
The torsion of pristine α-Fe nanowires was studied by molecular dynamics simulations. Torsion-induce...
The torsion of pristine α-Fe nanowires was studied by molecular dynamics simulations. Torsion-induce...
The torsion of pristine α-Fe nanowires was studied by molecular dynamics simulations. Torsion-induce...
We studied the torsion behavior of α-Fe nanowires seeded with twin boundaries (TBs) using molecular ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
Molecular dynamics (MD) simulations have been carried out to investigate the defect's effect on the ...
We investigate theoretically the effects of elastic and plastic deformations on heterogeneous nuclea...
Metallic nanowires (NWs) are essential building blocks for flexible electronics, and experi-ence dif...
Metallic nanowires (NWs) are essential building blocks for flexible electronics, and experience diff...
Leveraging defects is a cornerstone of materials science, and has become increasingly important from...
MasterNano-sized single crystals show significantly higher strength than that of bulk materials due ...
The torsion of pristine α-Fe nanowires was studied by molecular dynamics simulations. Torsion-induce...
The torsion of pristine α-Fe nanowires was studied by molecular dynamics simulations. Torsion-induce...
The torsion of pristine α-Fe nanowires was studied by molecular dynamics simulations. Torsion-induce...
We studied the torsion behavior of α-Fe nanowires seeded with twin boundaries (TBs) using molecular ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
International audienceWe studied the torsion behavior of a-Fe nanowires seeded with twin boundaries ...
Molecular dynamics (MD) simulations have been carried out to investigate the defect's effect on the ...
We investigate theoretically the effects of elastic and plastic deformations on heterogeneous nuclea...
Metallic nanowires (NWs) are essential building blocks for flexible electronics, and experi-ence dif...
Metallic nanowires (NWs) are essential building blocks for flexible electronics, and experience diff...
Leveraging defects is a cornerstone of materials science, and has become increasingly important from...
MasterNano-sized single crystals show significantly higher strength than that of bulk materials due ...