AbstractThe brittle versus ductile transition for conventional metals is dictated by the competition between dislocation emission and cleavage. For nanocrystalline metals with grain size below 25nm, however, dislocation activities are suppressed and the classic theory fails to apply. In this paper, one of the competing mechanisms that control the brittle versus ductile transition of nanocrystalline metals is found to be the grain boundary dominated creep deformation versus the grain boundary decohesion. A model is proposed to quantify the crack propagation in nanocrystalline metals. The effects of material properties, initial configuration and applied loads on the property of crack propagation are addressed. It is concluded that either the ...
A theoretical model is established to describe the effect of cooperative grain boundary (GB) sliding...
Nanocrystalline metals performance of defects and mechanisms of plastic deformation and conventional...
A model is suggested that describes enhanced strain rate sensitivity of nanocrystalline and ultrafin...
AbstractThe brittle versus ductile transition for conventional metals is dictated by the competition...
International audienceThe size and the character (low and large angle, special boundaries, tilt and ...
Abstract. A theoretical model is suggested which describes formation and convergence of nano-scale c...
Focusing on nanocrystalline (nc) pure face-centered cubic metals, where systematic experimental data...
A reduction in the grain size of a metal offers a means for enhancing the strength by retarding disl...
International audienceThe breakdown of the Hall–Petch relation in the grain-size strength dependence...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Nanocrystalline (NC) metals are exceptionally strong because they contain an unusually high density ...
Nanocrystalline metals, because of their distinct features, e.g., high strength, low ductility, pron...
In the last few decades, nanocrystalline metals have been of increasing interest. Their ability to s...
An analytical model is established to explore the cooperative mechanism between the dislocation emis...
A theoretical model is proposed to illustrate the cooperative effect of nano-grain rotation and shea...
A theoretical model is established to describe the effect of cooperative grain boundary (GB) sliding...
Nanocrystalline metals performance of defects and mechanisms of plastic deformation and conventional...
A model is suggested that describes enhanced strain rate sensitivity of nanocrystalline and ultrafin...
AbstractThe brittle versus ductile transition for conventional metals is dictated by the competition...
International audienceThe size and the character (low and large angle, special boundaries, tilt and ...
Abstract. A theoretical model is suggested which describes formation and convergence of nano-scale c...
Focusing on nanocrystalline (nc) pure face-centered cubic metals, where systematic experimental data...
A reduction in the grain size of a metal offers a means for enhancing the strength by retarding disl...
International audienceThe breakdown of the Hall–Petch relation in the grain-size strength dependence...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Nanocrystalline (NC) metals are exceptionally strong because they contain an unusually high density ...
Nanocrystalline metals, because of their distinct features, e.g., high strength, low ductility, pron...
In the last few decades, nanocrystalline metals have been of increasing interest. Their ability to s...
An analytical model is established to explore the cooperative mechanism between the dislocation emis...
A theoretical model is proposed to illustrate the cooperative effect of nano-grain rotation and shea...
A theoretical model is established to describe the effect of cooperative grain boundary (GB) sliding...
Nanocrystalline metals performance of defects and mechanisms of plastic deformation and conventional...
A model is suggested that describes enhanced strain rate sensitivity of nanocrystalline and ultrafin...