Twin boundary can both strengthen and soften nanocrystalline metals and has been an important path for improving the strength and ductility of nano materials. Here, using in-lab developed double-tilt tensile stage in the transmission electron microscope, the atomic scale twin boundary shearing process was in situ observed in a twin-structured nanocrystalline Pt. It was revealed that the twin boundary shear was resulted from partial dislocation emissions on the intersected {111} planes, which accommodate as large as 47% shear strain. It is uncovered that the partial dislocations nucleated and glided on the two intersecting {111} slip planes lead to a transition of the original symmetric tilt ∑3/(111) coherent twin boundary into a symmetric t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
The mechanical reliability of nanoscale metals is a precondition for electronic devices to function ...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
Deformation twinning is confirmed upon large plastic deformation in nanocrystalline (nc) Ni by trans...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
AbstractIn this review, we briefly introduce our in situ atomic-scale mechanical experimental techni...
We investigate grain boundary (GB) orientation effects on deformation of Ta bicrystal nanopillars un...
AbstractAlthough their mechanical behavior has been extensively studied, the atomic-scale deformatio...
AbstractIn this review, we briefly introduce our in situ atomic-scale mechanical experimental techni...
Because of the lower total number and density of defects in nanocrystals than those in their bulk co...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
The mechanical reliability of nanoscale metals is a precondition for electronic devices to function ...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
Deformation twinning is confirmed upon large plastic deformation in nanocrystalline (nc) Ni by trans...
Deformation twinning is an important deformation mode of nanocrystalline metals. In current study, w...
AbstractIn this review, we briefly introduce our in situ atomic-scale mechanical experimental techni...
We investigate grain boundary (GB) orientation effects on deformation of Ta bicrystal nanopillars un...
AbstractAlthough their mechanical behavior has been extensively studied, the atomic-scale deformatio...
AbstractIn this review, we briefly introduce our in situ atomic-scale mechanical experimental techni...
Because of the lower total number and density of defects in nanocrystals than those in their bulk co...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing t...
The mechanical reliability of nanoscale metals is a precondition for electronic devices to function ...