A model is suggested that describes enhanced strain rate sensitivity of nanocrystalline and ultrafine-grained metals. Within the model, plastic deformation of such metals incorporates dislocation transmission across grain boundaries (GBs) in the stress fields of dislocation pileups, the emission of individual dislocations from GBs as well as GB sliding accommodated by GB dislocation climb and/or Coble creep. The model predicts a strong increase in the strain rate sensitivity and a decrease in the activation volume with decreasing grain size, in accord with experimental data.We also considered the effect of GB sliding and Coble creep on the anomalous dependence of the activation volume on temperature observed in nanocrystalline Ni. It is dem...
Abstract. Modeling of strengthening by nanocrystalline materials need consideration of both dislocat...
Nanocrystalline metals, i.e., polycrystalline metals with grain sizes in the nanometer range, have r...
A theoretical model is suggested which describes the strengthening of nanocrystalline materials due ...
The effect of the grain size on the mechanical properties of metallic materials has been a topic of ...
Ultrafine-grained materials display almost no strain hardening, an enhanced strain rate sensitivity ...
We present dislocation simulations involving the collective behavior of partials and extended full d...
The strength and strain rate sensitivity properties of nanopolycrystals are attributed, at effective...
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...
A model for the deformation of nanocrystalline materials based on grain boundary sliding and formati...
International audienceThe breakdown of the Hall–Petch relation in the grain-size strength dependence...
We present a variational two-phase constitutive model capable of capturing the enhanced rate sensiti...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
This paper reports the proposed model of the flow behaviors of nanocrystalline metals and alloys def...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
Abstract. Modeling of strengthening by nanocrystalline materials need consideration of both dislocat...
Nanocrystalline metals, i.e., polycrystalline metals with grain sizes in the nanometer range, have r...
A theoretical model is suggested which describes the strengthening of nanocrystalline materials due ...
The effect of the grain size on the mechanical properties of metallic materials has been a topic of ...
Ultrafine-grained materials display almost no strain hardening, an enhanced strain rate sensitivity ...
We present dislocation simulations involving the collective behavior of partials and extended full d...
The strength and strain rate sensitivity properties of nanopolycrystals are attributed, at effective...
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...
A model for the deformation of nanocrystalline materials based on grain boundary sliding and formati...
International audienceThe breakdown of the Hall–Petch relation in the grain-size strength dependence...
We present a variational two-phase constitutive model capable of capturing the enhanced rate sensiti...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
This paper reports the proposed model of the flow behaviors of nanocrystalline metals and alloys def...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
Abstract. Modeling of strengthening by nanocrystalline materials need consideration of both dislocat...
Nanocrystalline metals, i.e., polycrystalline metals with grain sizes in the nanometer range, have r...
A theoretical model is suggested which describes the strengthening of nanocrystalline materials due ...