The plastic strain rate plays a central role in macroscopic models on elasto-viscoplasticity. In order to discuss the concept behind this quantity, we propose, first, a kinetic toy model to describe the dynamics of sliding layers representative of plastic deformation of single crystalline metals. The dynamic variable is given by the distribution function of relative strains between adjacent layers, and the plastic strain rate emerges as the average hopping rate between energy wells. We demonstrate the behavior of this model under different deformations and how it captures the elastic-to-plastic transition. Second, the kinetic toy model is reduced to a closed evolution equation for the average of the relative strain, allowing us to make a di...
Shear relaxation commonly occurs in shock compressed metals at the plastic wave front, but no consen...
The plastic response of metals is determined by the collective, coarse-grained dynamics of dislocati...
© 2020 John Wiley & Sons Ltd. This paper presents a generalized, elastoviscoplastic constitutive m...
The plastic strain rate plays a central role in macroscopic models on elasto-viscoplasticity. In ord...
131 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.An elasto-viscoplastic polycr...
[[abstract]]The constitutive equations for strain hardening (f.c.c. metals and alloys) and strain so...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The essentials of phenomenological modeling of metal deformation behavior at small strain are introd...
For visco-plasticity in polycrystalline solids under high strain rates, we introduce a dynamic flow ...
Strain localization and dislocation microstructure formation are typical features of plastic deforma...
The paper shows a new approach for formulation of temperature and rate dependent models of plastic b...
AbstractAccording to the experimental observation made by Phillips and Lee in 1979, the direction of...
Shear banding, a type of inhomogeneous plastic flow involving very large local strains, occurs in a ...
Shear relaxation commonly occurs in shock compressed metals at the plastic wave front, but no consen...
The plastic response of metals is determined by the collective, coarse-grained dynamics of dislocati...
© 2020 John Wiley & Sons Ltd. This paper presents a generalized, elastoviscoplastic constitutive m...
The plastic strain rate plays a central role in macroscopic models on elasto-viscoplasticity. In ord...
131 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.An elasto-viscoplastic polycr...
[[abstract]]The constitutive equations for strain hardening (f.c.c. metals and alloys) and strain so...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The essentials of phenomenological modeling of metal deformation behavior at small strain are introd...
For visco-plasticity in polycrystalline solids under high strain rates, we introduce a dynamic flow ...
Strain localization and dislocation microstructure formation are typical features of plastic deforma...
The paper shows a new approach for formulation of temperature and rate dependent models of plastic b...
AbstractAccording to the experimental observation made by Phillips and Lee in 1979, the direction of...
Shear banding, a type of inhomogeneous plastic flow involving very large local strains, occurs in a ...
Shear relaxation commonly occurs in shock compressed metals at the plastic wave front, but no consen...
The plastic response of metals is determined by the collective, coarse-grained dynamics of dislocati...
© 2020 John Wiley & Sons Ltd. This paper presents a generalized, elastoviscoplastic constitutive m...