This paper presents a model which quantitatively predicts grain refinement and strength/hardness of Al alloys after very high levels of cold deformation through processes including cold rolling, equal channel angular pressing (ECAP), multiple forging (MF), accumulative rolling bonding (ARB) and embossing. The model deals with materials in which plastic deformation is exclusively due to dislocation movement, which is in good approximation the case for aluminium alloys. In the early stages of deformation, the generated dislocations are stored in grains and contribute to overall strength. With increase in strain, excess dislocations form and/or move to new cell walls/grain boundaries and grains are refined. We examine this model using both our...
Materials strengthened by conventional methods such as strain hardening, solute additions, precipita...
A study of strain path related effects on recrystallisation in aluminium has been carried out. The r...
Metals processed by severe plastic deformation (SPD) techniques, such as equal-channel angular press...
The grain refinement during severe plastic deformation (SPD) is predicted using volume averaged amou...
The grain refinement during severe plastic deformation (SPD) is predicted using volume averaged amou...
Samples of an Al1050 aluminum alloy (99.5% Al) were subjected to equal channel angular pressing (ECA...
This work was undertaken to evaluate the applicability of the Ashby grain-boundary hardening model f...
A recently developed grain refinement and strengthening model for oxide-free Al alloys processed by ...
Copyright: © 2021 by the authors. The deformation structures formed in an Al-0.1Mg single-phase alum...
Microstructure characterization and identification of the different nature of boundary formation dur...
Reducing length scale on precipitation strengthened aluminum alloys leads to improved strength but r...
An Al-7075 aluminum alloy and a ZK60 magnesium alloy were processed by acombination of equal-channel...
A physically based model to predict the increment of hardness and grain refinement of pure metals du...
It is well known that when coarse-grained metals undergo severe plastic deformation to be transforme...
An aluminum alloy with a chemical composition of Al-6%Mg-0.35%Mn-0.2%Sc- 0.08%Zr-0.07%Cr (in wt.) an...
Materials strengthened by conventional methods such as strain hardening, solute additions, precipita...
A study of strain path related effects on recrystallisation in aluminium has been carried out. The r...
Metals processed by severe plastic deformation (SPD) techniques, such as equal-channel angular press...
The grain refinement during severe plastic deformation (SPD) is predicted using volume averaged amou...
The grain refinement during severe plastic deformation (SPD) is predicted using volume averaged amou...
Samples of an Al1050 aluminum alloy (99.5% Al) were subjected to equal channel angular pressing (ECA...
This work was undertaken to evaluate the applicability of the Ashby grain-boundary hardening model f...
A recently developed grain refinement and strengthening model for oxide-free Al alloys processed by ...
Copyright: © 2021 by the authors. The deformation structures formed in an Al-0.1Mg single-phase alum...
Microstructure characterization and identification of the different nature of boundary formation dur...
Reducing length scale on precipitation strengthened aluminum alloys leads to improved strength but r...
An Al-7075 aluminum alloy and a ZK60 magnesium alloy were processed by acombination of equal-channel...
A physically based model to predict the increment of hardness and grain refinement of pure metals du...
It is well known that when coarse-grained metals undergo severe plastic deformation to be transforme...
An aluminum alloy with a chemical composition of Al-6%Mg-0.35%Mn-0.2%Sc- 0.08%Zr-0.07%Cr (in wt.) an...
Materials strengthened by conventional methods such as strain hardening, solute additions, precipita...
A study of strain path related effects on recrystallisation in aluminium has been carried out. The r...
Metals processed by severe plastic deformation (SPD) techniques, such as equal-channel angular press...