Irreversible thermodynamics is employed as a framework to describe plastic deformation in pure metals and alloys. Expressions to describe saturation stress in single crystals and nanocrystals are employed over wide ranges of temperature, strain rate and grain size. The importance of the roles played by vacancy self-diffusion in dislocation climb and in plasticity is shown. Equations to describe the stress-strain response of single crystals and ultrafine-grained metals are derived. The activation energy for dislocation annihilation plays a central role in the mechanical response of the systems. Succinct formulations for predicting hot deformation behaviour and relaxation of industrial alloys are presented; the influence of composition in the...
This work aims to describe plastic deformation and microstructure evolution of metals at various sca...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...
Irreversible thermodynamics is employed as a framework to describe plastic deformation in pure metal...
Irreversible thermodynamics is employed to describe plastic deformation of metallic single crystals ...
The main objective of this thesis is to provide an irreversible thermodynamics framework to describe...
The main objective of this thesis is to provide an irreversible thermodynamics framework to describe...
A review of constitutive models based on the mechanics of dislocation motion is presented, with focu...
A new unified description for the steady state deformation stress in single and polycrystalline meta...
The Kocks-Mecking theory is reformulated by finding a new expression for the recovery rate term. A t...
A new theory for describing plastic deformation in metals is presented. The approach focuses on obta...
A new unified description for the steady state deformation stress in single and polycrystalline meta...
Dislocation pile-up and thermal activation influences on the deformation and fracturing behaviors of...
This work aims to describe plastic deformation and microstructure evolution of metals at various sca...
Dislocation pile-up and thermal activation influences on the deformation and fracturing behaviors of...
This work aims to describe plastic deformation and microstructure evolution of metals at various sca...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...
Irreversible thermodynamics is employed as a framework to describe plastic deformation in pure metal...
Irreversible thermodynamics is employed to describe plastic deformation of metallic single crystals ...
The main objective of this thesis is to provide an irreversible thermodynamics framework to describe...
The main objective of this thesis is to provide an irreversible thermodynamics framework to describe...
A review of constitutive models based on the mechanics of dislocation motion is presented, with focu...
A new unified description for the steady state deformation stress in single and polycrystalline meta...
The Kocks-Mecking theory is reformulated by finding a new expression for the recovery rate term. A t...
A new theory for describing plastic deformation in metals is presented. The approach focuses on obta...
A new unified description for the steady state deformation stress in single and polycrystalline meta...
Dislocation pile-up and thermal activation influences on the deformation and fracturing behaviors of...
This work aims to describe plastic deformation and microstructure evolution of metals at various sca...
Dislocation pile-up and thermal activation influences on the deformation and fracturing behaviors of...
This work aims to describe plastic deformation and microstructure evolution of metals at various sca...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...