The grain refinement during severe plastic deformation (SPD) is predicted using volume averaged amount of dislocations generated. The model incorporates a new expansion of a model for hardening in the parabolic hardening regime, in which the work hardening depends on the effective dislocation free path related to the presence of non shearable particles and solute-solute nearest neighbour interactions. These two mechanisms give rise to dislocation multiplication in the form of generation of geometrically necessary dislocations and dislocations induced by local bond energies. The model predicts the volume averaged amount of dislocations generated and considers that they distribute to create cell walls and move to existing cell walls/grain bou...
Severe plastic deformation (SPD) techniques are known to promote exceptional material properties by ...
Grain size is recognized as a key microstructural factor affecting mechanical and, to some extent, p...
The in-grain orientation gradient and grain fragmentation are essential features of substructure dev...
The grain refinement during severe plastic deformation (SPD) is predicted using volume averaged amou...
This paper presents a model which quantitatively predicts grain refinement and strength/hardness of ...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
Dislocation and grain-boundary processes contribute significantly to plastic behaviour in polycrysta...
A physically based model to predict the increment of hardness and grain refinement of pure metals du...
This work was undertaken to evaluate the applicability of the Ashby grain-boundary hardening model f...
Dislocations (line defects) and grain boundaries (planar defects) are two types of lattice defects t...
Copyright: © 2021 by the authors. The deformation structures formed in an Al-0.1Mg single-phase alum...
Severe plastic deformation (SPD) is one of the most promising methods for fabricating bulk ultrafine ...
Reducing length scale on precipitation strengthened aluminum alloys leads to improved strength but r...
Polycrystalline materials with mean grain size smaller than 10nm will soften if its mean grain size ...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
Severe plastic deformation (SPD) techniques are known to promote exceptional material properties by ...
Grain size is recognized as a key microstructural factor affecting mechanical and, to some extent, p...
The in-grain orientation gradient and grain fragmentation are essential features of substructure dev...
The grain refinement during severe plastic deformation (SPD) is predicted using volume averaged amou...
This paper presents a model which quantitatively predicts grain refinement and strength/hardness of ...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
Dislocation and grain-boundary processes contribute significantly to plastic behaviour in polycrysta...
A physically based model to predict the increment of hardness and grain refinement of pure metals du...
This work was undertaken to evaluate the applicability of the Ashby grain-boundary hardening model f...
Dislocations (line defects) and grain boundaries (planar defects) are two types of lattice defects t...
Copyright: © 2021 by the authors. The deformation structures formed in an Al-0.1Mg single-phase alum...
Severe plastic deformation (SPD) is one of the most promising methods for fabricating bulk ultrafine ...
Reducing length scale on precipitation strengthened aluminum alloys leads to improved strength but r...
Polycrystalline materials with mean grain size smaller than 10nm will soften if its mean grain size ...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
Severe plastic deformation (SPD) techniques are known to promote exceptional material properties by ...
Grain size is recognized as a key microstructural factor affecting mechanical and, to some extent, p...
The in-grain orientation gradient and grain fragmentation are essential features of substructure dev...