Nanolayered materials consisting of alternate layers of two different metals offer enhanced mechanical properties such as hardness but the strengthening mechanism is not well understood when the bilayer thickness approaches a few nanometers. Here, we report on the uniaxial compression of aluminum/palladium pillars (900 nm diameter) with bilayer thickness = 2, 20 and 80 nm. We observe that the deformation behavior of these pillars depends on the value of bilayer thickness, changing from dislocation driven plasticity at large bilayer thickness to shear due to grain rotation via grain boundary sliding at small bilayer thickness. The transition occurs at about a bilayer thickness of 20 nm where a mixture of the two mechanisms is apparent. © 201...
Micromechanics of bicrystals with selected grain boundary (GB) types is an effective method of under...
The authors carried out matched experiments and molecular dynamics simulations of the compression of...
We report on cooperative grain rotation accompanied by a strong Bauschinger effect in nanocrystallin...
The mechanical behavior of bicrystalline aluminum nano-pillars under uniaxial compression reveals si...
This thesis presents a study of the design and fabrication of nanolayered aluminium/palladium (Al/Pd...
Room-temperature uniaxial compressions of 900-nm-diameter aluminum bi-crystals, each containing a h...
The effect of inclusion of a grain boundary in nanopillar was studied using Al bicrystal with [3 43]...
Nanocrystalline palladium thin films deposited by electron-beam evaporation and deformed by on-chip ...
Nanoscale polycrystalline metals typically exhibit increasing hardness with decreasing grain size do...
We report the results of constant strain rate experiments on electroplated, single crystalline coppe...
Plastic deformation of classical crystalline materials is essentially dominated by dislocations and ...
Our current understanding of size-dependent strength in nano- and microscale crystals is centered ar...
In nanostructured metallic multilayers, hardness and strength are greatly enhanced compared to their...
Traditionally, the most fundamental principle in materials science is that the properties of materia...
The competition between free surfaces and internal grain boundaries as preferential sites for disloc...
Micromechanics of bicrystals with selected grain boundary (GB) types is an effective method of under...
The authors carried out matched experiments and molecular dynamics simulations of the compression of...
We report on cooperative grain rotation accompanied by a strong Bauschinger effect in nanocrystallin...
The mechanical behavior of bicrystalline aluminum nano-pillars under uniaxial compression reveals si...
This thesis presents a study of the design and fabrication of nanolayered aluminium/palladium (Al/Pd...
Room-temperature uniaxial compressions of 900-nm-diameter aluminum bi-crystals, each containing a h...
The effect of inclusion of a grain boundary in nanopillar was studied using Al bicrystal with [3 43]...
Nanocrystalline palladium thin films deposited by electron-beam evaporation and deformed by on-chip ...
Nanoscale polycrystalline metals typically exhibit increasing hardness with decreasing grain size do...
We report the results of constant strain rate experiments on electroplated, single crystalline coppe...
Plastic deformation of classical crystalline materials is essentially dominated by dislocations and ...
Our current understanding of size-dependent strength in nano- and microscale crystals is centered ar...
In nanostructured metallic multilayers, hardness and strength are greatly enhanced compared to their...
Traditionally, the most fundamental principle in materials science is that the properties of materia...
The competition between free surfaces and internal grain boundaries as preferential sites for disloc...
Micromechanics of bicrystals with selected grain boundary (GB) types is an effective method of under...
The authors carried out matched experiments and molecular dynamics simulations of the compression of...
We report on cooperative grain rotation accompanied by a strong Bauschinger effect in nanocrystallin...