Detailed transmission electron microscopy analysis on a severely deformed Al-Si composite material has revealed that partial dislocation slips and deformation twinning are the major plastic deformation carriers in ultrafine silicon grains. This resembles the deformation twinning activities and mechanisms observed in nano-crystalline face-centred-cubic metallic materials. While deformation twinning and amorphisation in Si were thought unlikely to co-exist, it is observed for the first time that excessive twinning and partial dislocation interactions can lead to localised solid state amorphisation inside ultrafine silicon grains
A transmission electron microscope study on cross sections obtained from ground and polished surface...
A transmission electron microscope study on cross sections obtained from ground and polished surface...
Here we report that high-power, pulsed, laser-driven shock compression of monocrystalline silicon pr...
The nanoscratching-induced deformation of monocrystalline Si has been investigated using transmissio...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
Deformation behaviors of monocrystalline Si induced by nanoscratching were systematically investigat...
This focused review includes two parts. In the first part, the previous studies on the deformations ...
This work focuses on the deformation behavior of an ultra-fine grained Al-Mg-Si alloy processed by e...
The mechanism responsible for deformation-induced crystalline-to-amorphous transition (CAT) in silic...
The characterization of silicon structure at nanometre-scale is an important issue as nano-tribology...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
Deformation twins and stacking faults were observed in nanostructure Al-Mg alloys subjected to high ...
The compressive mechanical responses of silicon nanoparticles with respect to crystallographic orien...
A transmission electron microscope study on cross sections obtained from ground and polished surface...
A transmission electron microscope study on cross sections obtained from ground and polished surface...
Here we report that high-power, pulsed, laser-driven shock compression of monocrystalline silicon pr...
The nanoscratching-induced deformation of monocrystalline Si has been investigated using transmissio...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
Deformation behaviors of monocrystalline Si induced by nanoscratching were systematically investigat...
This focused review includes two parts. In the first part, the previous studies on the deformations ...
This work focuses on the deformation behavior of an ultra-fine grained Al-Mg-Si alloy processed by e...
The mechanism responsible for deformation-induced crystalline-to-amorphous transition (CAT) in silic...
The characterization of silicon structure at nanometre-scale is an important issue as nano-tribology...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
Deformation twins and stacking faults were observed in nanostructure Al-Mg alloys subjected to high ...
The compressive mechanical responses of silicon nanoparticles with respect to crystallographic orien...
A transmission electron microscope study on cross sections obtained from ground and polished surface...
A transmission electron microscope study on cross sections obtained from ground and polished surface...
Here we report that high-power, pulsed, laser-driven shock compression of monocrystalline silicon pr...