The plastic deformation of polycrystalline Cu with ultrathin lamella twins has been studied using molecular dynamics simulations. The results of uniaxial tensile deformation simulation show that the abundance of twin boundaries provides obstacles to dislocation motion, which in consequence leads to a high strain hardening rate in the nanotwinned Cu. We also show that the twin lamellar spacing plays a vital role in controlling the strengthening effects, i.e., the thinner the thickness of the twin lamella, the harder the material. Additionally, twin boundaries can act as dislocation nucleation sites as they gradually lose coherency at large strain. These results indicate that controlled introduction of nanosized twins into metals can be an ef...
Fivefold deformation twins were reported recently to be observed in the experiment of the nanocrysta...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
Deformation in a microcomponent is often constrained by surrounding joined material making the compo...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
Molecular dynamics simulations are performed to investigate the deformation mechanisms of nanotwinne...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
We use molecular dynamics simulations to elucidate the deformation mechanisms of textured nanotwinne...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
The introduction of twin boundaries (TBs) within nanocrystalline grains has given scientists an oppo...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
Twins play an important role in the deformation of nanocrystalline (NC) metals. The size effects of ...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
This paper addressed the prestress- and twin spacing-dependent deformation as well as the hardening-...
Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanis...
A series of large-scale molecular dynamics simulations have been performed to investigate the tensil...
Fivefold deformation twins were reported recently to be observed in the experiment of the nanocrysta...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
Deformation in a microcomponent is often constrained by surrounding joined material making the compo...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
Molecular dynamics simulations are performed to investigate the deformation mechanisms of nanotwinne...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
We use molecular dynamics simulations to elucidate the deformation mechanisms of textured nanotwinne...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
The introduction of twin boundaries (TBs) within nanocrystalline grains has given scientists an oppo...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
Twins play an important role in the deformation of nanocrystalline (NC) metals. The size effects of ...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
This paper addressed the prestress- and twin spacing-dependent deformation as well as the hardening-...
Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanis...
A series of large-scale molecular dynamics simulations have been performed to investigate the tensil...
Fivefold deformation twins were reported recently to be observed in the experiment of the nanocrysta...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
Deformation in a microcomponent is often constrained by surrounding joined material making the compo...