Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100 nm. Contrary to coarse-grained metals, which become more difficult to twin with decreasing grain size, nanocrystalline face-centered-cubic (fcc) metals become easier to twin with decreasing grain size, reaching a maximum twinning probability, and then become more difficult to twin when the grain size decreases further, i.e. exhibiting an inverse grain-size effect on twinning. Molecular dynamics simulations and experimental observations have revealed that the mechanisms of deformation twinning in nanocrystalline metals are different from those in their coarse-grained counterparts. Consequently, there are several types of deformation twin...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
Incoherent twin boundaries (ITBs) can significantly affect the mechanical properties of twin-structu...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100 nm. C...
Both twinning and detwinning have been reported to occur during the deformation of nanocrystalline (...
Fivefold deformation twins were reported recently to be observed in the experiment of the nanocrysta...
Deformation twinning of nanocrystalline body-centered cubic Mo was studied using molecular dynamics ...
Deformation twinning is confirmed upon large plastic deformation in nanocrystalline (nc) Ni by trans...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
Twinning is one of the main mechanisms of plastic deformation in materials. Studies have also demons...
The deformation mechanism of body-centered cubic (bcc) nanocrystalline tantalum with grain sizes of ...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
Twins play an important role in the deformation of nanocrystalline (NC) metals. The size effects of ...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
Incoherent twin boundaries (ITBs) can significantly affect the mechanical properties of twin-structu...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100 nm. C...
Both twinning and detwinning have been reported to occur during the deformation of nanocrystalline (...
Fivefold deformation twins were reported recently to be observed in the experiment of the nanocrysta...
Deformation twinning of nanocrystalline body-centered cubic Mo was studied using molecular dynamics ...
Deformation twinning is confirmed upon large plastic deformation in nanocrystalline (nc) Ni by trans...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
Twinning is one of the main mechanisms of plastic deformation in materials. Studies have also demons...
The deformation mechanism of body-centered cubic (bcc) nanocrystalline tantalum with grain sizes of ...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
Twins play an important role in the deformation of nanocrystalline (NC) metals. The size effects of ...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
Incoherent twin boundaries (ITBs) can significantly affect the mechanical properties of twin-structu...