AbstractPlastic flow evolution was investigated for various metals and alloys, which differed in chemical bond and crystal lattice type (BCC/FCC/HCP), structural state (single-crystal/polycrystalline) and deformation mechanisms (dislocation glide/twinning). On the base of conclusive evidence it is attempted to explain the phenomenon of plastic flow localization by invoking a fundamental principle of quantum mechanics
While glasses are ubiquitous in natural and manufactured materials, the atomic-level mechanisms gove...
Recent experimental data has revealed that, over short time scales (on the nanosecond scale), during...
The collective behavior of dislocations in irradiated materials is studied using the kinetic equatio...
AbstractThe localized plastic flow auto-waves observed for the stages of easy glide and linear work ...
The localized plastic deformation and the law-like regularities underlying its development in solids...
The parameters of localization patterns emerging at the linear stage of work hardening are discussed...
A self-excited wave model of plastic flow in crystalline solids is proposed. Experimental data on pl...
Abstract. A self-excited wave model of plastic flow in crys'talhe solids is proposed. Experimen...
The generality of localization of plastic deformation, which is observed at the stage of linear work...
Considered is the generation of self-excited waves by non-homogeneous plastic flow observed for a ra...
The self-consistent theory of plastic deformation in solid was considered within the framework of th...
Understanding of mechanical properties of materials and a possibility to predicting them from ab ini...
A new approach is proposed to describe the autowave processes responsible for plastic deformation lo...
Mechanisms of structural relaxation are linked with the metastability of nonequilibrium potential of...
In this paper, the general laws of localized plastic flow development are described for the linear w...
While glasses are ubiquitous in natural and manufactured materials, the atomic-level mechanisms gove...
Recent experimental data has revealed that, over short time scales (on the nanosecond scale), during...
The collective behavior of dislocations in irradiated materials is studied using the kinetic equatio...
AbstractThe localized plastic flow auto-waves observed for the stages of easy glide and linear work ...
The localized plastic deformation and the law-like regularities underlying its development in solids...
The parameters of localization patterns emerging at the linear stage of work hardening are discussed...
A self-excited wave model of plastic flow in crystalline solids is proposed. Experimental data on pl...
Abstract. A self-excited wave model of plastic flow in crys'talhe solids is proposed. Experimen...
The generality of localization of plastic deformation, which is observed at the stage of linear work...
Considered is the generation of self-excited waves by non-homogeneous plastic flow observed for a ra...
The self-consistent theory of plastic deformation in solid was considered within the framework of th...
Understanding of mechanical properties of materials and a possibility to predicting them from ab ini...
A new approach is proposed to describe the autowave processes responsible for plastic deformation lo...
Mechanisms of structural relaxation are linked with the metastability of nonequilibrium potential of...
In this paper, the general laws of localized plastic flow development are described for the linear w...
While glasses are ubiquitous in natural and manufactured materials, the atomic-level mechanisms gove...
Recent experimental data has revealed that, over short time scales (on the nanosecond scale), during...
The collective behavior of dislocations in irradiated materials is studied using the kinetic equatio...