Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend on the different boundary evolutions. Thereafter, models of proof stress determination should take into account the different nature of the boundaries that form during severe plastic deformation. In the last few decades, Hall–Petch modified relationship and other proof stress modelling were extensively discussed. This paper deals with further insights into the Hansen's and other authors approach to the modelling of aluminium poof stress after equal channel angular pressing. The present model is based on a detailed transmission electron microscopy microstructure characterization of the different strengthening contributions in an age-hardened Al...
Aluminium is often treated as a homogeneous material. However, when investigated on a microscopic sc...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...
Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend o...
Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend o...
Microstructure characterization and identification of the different nature of boundary formation dur...
Microstructure characterization and identification of the different nature of boundary formation dur...
Microstructure characterization and identification of the different nature of boundary formation dur...
A modelling framework for the strength and work hardening contributions in age hardened Al–Mg–Si all...
A modelling framework for the strength and work hardening contributions in age hardened Al–Mg–Si all...
A modelling framework for the strength and work hardening contributions in age hardened Al–Mg–Si all...
Al–Mg–Si alloys are usually formed into their final shape by rolling or extrusion. After extrusion, ...
The current investigation presents a breakdown analysis of the elastoplastic behavior of commerciall...
The current investigation presents a breakdown analysis of the elastoplastic behavior of commerciall...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...
Aluminium is often treated as a homogeneous material. However, when investigated on a microscopic sc...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...
Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend o...
Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend o...
Microstructure characterization and identification of the different nature of boundary formation dur...
Microstructure characterization and identification of the different nature of boundary formation dur...
Microstructure characterization and identification of the different nature of boundary formation dur...
A modelling framework for the strength and work hardening contributions in age hardened Al–Mg–Si all...
A modelling framework for the strength and work hardening contributions in age hardened Al–Mg–Si all...
A modelling framework for the strength and work hardening contributions in age hardened Al–Mg–Si all...
Al–Mg–Si alloys are usually formed into their final shape by rolling or extrusion. After extrusion, ...
The current investigation presents a breakdown analysis of the elastoplastic behavior of commerciall...
The current investigation presents a breakdown analysis of the elastoplastic behavior of commerciall...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...
Aluminium is often treated as a homogeneous material. However, when investigated on a microscopic sc...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...
The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been...