Recently, a transition of deformation mechanism from localized dislocation slip to delocalized plasticity via an anomalous tensile detwinning mechanism has been discovered in bitwinned metallic nanowires (NWs) with a single twin boundary (TB) running parallel to the NW length. However, experiments showed that the anomalous tensile detwinning in most of bitwinned NWs does not propagate through the whole NW, which limits the NWs failure strain when compared to the twinning-induced superplasticity in single-crystalline NWs. An elusive but fundamentally important question is that what factors might affect the propagation of tensile detwinning in such bitwinned NWs. In addition, can this tensile detwinning mechanism be applied to other types of ...
When materials are deformed plastically via dislocations, a general finding is that samples with sma...
In conventional metals, there is plenty of space for dislocations-line defects whose motion results ...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
Metallic nanowires (NWs) with twin boundaries (TBs) running parallel to the NW length direction exhi...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility, owing to their limi...
In this dissertation, the relationships between structure-mechanical properties-deformation mechanis...
In this dissertation, the relationships between structure-mechanical properties-deformation mechanis...
ABSTRACT: Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to t...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
AbstractAlthough their mechanical behavior has been extensively studied, the atomic-scale deformatio...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
Abstract The mechanisms of plasticity in metal naowires with diameters below 100 nm are reviewed. At...
Molecular dynamics simulations are performed to investigate the deformation mechanisms of nanotwinne...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to their limit...
Mechanical response of metal nanowires has recently attracted a lot of interest due to their ultra-h...
When materials are deformed plastically via dislocations, a general finding is that samples with sma...
In conventional metals, there is plenty of space for dislocations-line defects whose motion results ...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
Metallic nanowires (NWs) with twin boundaries (TBs) running parallel to the NW length direction exhi...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility, owing to their limi...
In this dissertation, the relationships between structure-mechanical properties-deformation mechanis...
In this dissertation, the relationships between structure-mechanical properties-deformation mechanis...
ABSTRACT: Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to t...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
AbstractAlthough their mechanical behavior has been extensively studied, the atomic-scale deformatio...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
Abstract The mechanisms of plasticity in metal naowires with diameters below 100 nm are reviewed. At...
Molecular dynamics simulations are performed to investigate the deformation mechanisms of nanotwinne...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to their limit...
Mechanical response of metal nanowires has recently attracted a lot of interest due to their ultra-h...
When materials are deformed plastically via dislocations, a general finding is that samples with sma...
In conventional metals, there is plenty of space for dislocations-line defects whose motion results ...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...