A 5-fold twin is usually observed in nanostructured metals after mechanical tests and/or annealing treatment. However, the formation mechanism of a 5-fold twin has not been fully elaborated, due to the lack of direct time-resolved atomic-scale observation. Here, by using in situ nanomechanical testing combined with atomistic simulations, we show that sequential twinning slip in varying slip systems and decomposition of high-energy grain boundaries account for the 5-fold twin formation in a nanoscale gold single crystal under bending as well as the reversible formation and dissolution of a 5-fold twin in a nanocrystal with a preexisting twin under tension and shearing. Moreover, we find that the complex stress state in the neck area results ...
International audienceThe effect of surface step and twin boundary on the mechanical twinning proces...
Twin boundary can both strengthen and soften nanocrystalline metals and has been an important path f...
Nanostructures are emerging as novel materials with revolutionary application in electronics, nuclea...
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 ...
The mechanical reliability of nanoscale metals is a precondition for electronic devices to function ...
Twin nucleation in a face-centered cubic crystal is believed to be accomplished through the formatio...
Fivefold deformation twins were reported recently to be observed in the experiment of the nanocrysta...
Dislocation interactions with twin boundary (TB) have been well-established in nanotwinned metals. P...
Dislocation interactions with twin boundary (TB) have been well-established in nanotwinned metals. P...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
International audienceThe effect of surface step and twin boundary on the mechanical twinning proces...
Twin boundary can both strengthen and soften nanocrystalline metals and has been an important path f...
Nanostructures are emerging as novel materials with revolutionary application in electronics, nuclea...
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 ...
The mechanical reliability of nanoscale metals is a precondition for electronic devices to function ...
Twin nucleation in a face-centered cubic crystal is believed to be accomplished through the formatio...
Fivefold deformation twins were reported recently to be observed in the experiment of the nanocrysta...
Dislocation interactions with twin boundary (TB) have been well-established in nanotwinned metals. P...
Dislocation interactions with twin boundary (TB) have been well-established in nanotwinned metals. P...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
International audienceThe effect of surface step and twin boundary on the mechanical twinning proces...
Twin boundary can both strengthen and soften nanocrystalline metals and has been an important path f...
Nanostructures are emerging as novel materials with revolutionary application in electronics, nuclea...