A modelling framework for the strength and work hardening contributions in age hardened Al–Mg–Si alloys is presented. The modelling work is based on transmission electron microscopy (TEM) measurements of the needle-shaped precipitate lengths and cross sections, and on stress-strain curves up to fracture, obtained by tensile tests applying a necking correction. For strains beyond the uniform limit, further work hardening is found to be strongly suppressed by the presence of the precipitates. At strains up to about 10–15%, new models are proposed for the description of the work hardening at different aging conditions. A detailed way of accounting for the contribution from generation of dislocation loops around non-sheared precipitates is form...
The effect of Al3Sc on the flow stress behavior of aluminum–scandium alloy was experimentally verifi...
Many metal alloys are strengthened by controlling precipitation to achieve an optimal peak-aged cond...
Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend o...
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...
The strength and work hardening of age hardened AA6063 and AA6082 alloys have been investigated in t...
In this study the influence of precipitates on the mechanical properties and plastic anisotropy of a...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
AbstractThe effect of increasing pre-stretching to higher levels, than are currently used in industr...
Partial aging of AA6060 aluminum alloys is known to result in a microstructure characterized by need...
In the present study, an age-hardening model for Al-Mg-Si alloys was developed considering cylindric...
In the present study, an age-hardening model for Al-Mg-Si alloys was developed considering cylindric...
Al–Mg–Si alloys are usually formed into their final shape by rolling or extrusion. After extrusion, ...
The effect of Al3Sc on the flow stress behavior of aluminum–scandium alloy was experimentally verifi...
Many metal alloys are strengthened by controlling precipitation to achieve an optimal peak-aged cond...
Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend o...
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...
The strength and work hardening of age hardened AA6063 and AA6082 alloys have been investigated in t...
In this study the influence of precipitates on the mechanical properties and plastic anisotropy of a...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
AbstractThe effect of increasing pre-stretching to higher levels, than are currently used in industr...
Partial aging of AA6060 aluminum alloys is known to result in a microstructure characterized by need...
In the present study, an age-hardening model for Al-Mg-Si alloys was developed considering cylindric...
In the present study, an age-hardening model for Al-Mg-Si alloys was developed considering cylindric...
Al–Mg–Si alloys are usually formed into their final shape by rolling or extrusion. After extrusion, ...
The effect of Al3Sc on the flow stress behavior of aluminum–scandium alloy was experimentally verifi...
Many metal alloys are strengthened by controlling precipitation to achieve an optimal peak-aged cond...
Microstructure dislocation strengthening mechanisms in severely deformed aluminium strongly depend o...