A new approach to modeling of the plasticity of materials with nanostructure and ultrafine one has been proposed. Its main advantage is the minimum number of physical parameters in use. In the context of the proposed model, we calculated the volumetric density of the energy of surface tension of the material grains. This energy is a significant part of the internal energy during deformation. The size dependence of the melting temperature of nanoparticles was compared with experimental data. We obtained size dependence of the yield point on its basis. Yield point was interpreted as the result of changes of grains surface energy during the deformation. The obtained yield point dependence on the grain size was related to the Hall–Petch law, an...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Surfaces of solids behave differently from the bulk due to different atomic rearrangements and proce...
International audienceThe deformation of blunt nanocrystals under uniaxial compression is modelled u...
AbstractA new approach to modeling of the plasticity of materials with nanostructure and ultrafine o...
This paper reports the proposed model of the flow behaviors of nanocrystalline metals and alloys def...
Deformation and failure mechanisms of bulk nanostructured materials as first observed and modeled by...
Abstract. We provide an overview of theoretical models of plastic deformation processes in nanocryst...
Abstract. In this paper, the mechanical properties of nanostructured materials, defined hereafter as...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 2...
International audienceThe breakdown of the Hall–Petch relation in the grain-size strength dependence...
If materials are to be developed from the ground up, the process will be dependent upon accurate and...
The recent literature is reviewed with respect to the strength-limiting deformation mechanisms in na...
As a result of recent investigations on nanocrystalline (nc) materials, extensive experimental data ...
In this paper, a phase mixture model was employed to simulate the strain hardening properties of met...
A model for the deformation of nanocrystalline materials based on grain boundary sliding and formati...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Surfaces of solids behave differently from the bulk due to different atomic rearrangements and proce...
International audienceThe deformation of blunt nanocrystals under uniaxial compression is modelled u...
AbstractA new approach to modeling of the plasticity of materials with nanostructure and ultrafine o...
This paper reports the proposed model of the flow behaviors of nanocrystalline metals and alloys def...
Deformation and failure mechanisms of bulk nanostructured materials as first observed and modeled by...
Abstract. We provide an overview of theoretical models of plastic deformation processes in nanocryst...
Abstract. In this paper, the mechanical properties of nanostructured materials, defined hereafter as...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 2...
International audienceThe breakdown of the Hall–Petch relation in the grain-size strength dependence...
If materials are to be developed from the ground up, the process will be dependent upon accurate and...
The recent literature is reviewed with respect to the strength-limiting deformation mechanisms in na...
As a result of recent investigations on nanocrystalline (nc) materials, extensive experimental data ...
In this paper, a phase mixture model was employed to simulate the strain hardening properties of met...
A model for the deformation of nanocrystalline materials based on grain boundary sliding and formati...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Surfaces of solids behave differently from the bulk due to different atomic rearrangements and proce...
International audienceThe deformation of blunt nanocrystals under uniaxial compression is modelled u...