The crystallographic rotation field for deformation in torsion is such that it is possible for orientations close to stable orientations to rotate away from the stable orientation. A Taylor type model was used to demonstrate that this phenomenon has the potential to transform randomly generated low-angle boundaries into high-angle boundaries. After imposing an equivalent strain of 1.2, up to 40% of the simulated boundaries displayed a disorientation in excess of 15°. These high-angle boundaries were characterised by a disorientation axis close to parallel with the sample radial direction. A series of hot torsion tests was carried out on 1050 aluminium to seek evidence for boundaries formed by this mechanism. A number of deformation-indu...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
Severe plastic deformation (SPD) of metals to obtain ultra-fine or even nano-sized grains has proven...
Of considerable importance to the generation of ultrafine microstructures is the development of high...
A study of strain path related effects on recrystallisation in aluminium has been carried out. The r...
Microstructural engineering is at the core of a never ending quest for better performing materials. ...
Severe plastic deformation imposed under high hydrostatic pressure introduces a considerable disloca...
In this study, the local texture evolution during high pressure torsion (HPT) deformation of aluminu...
International audienceThe development of intra-grain orientation distributions is analysed for 92 in...
The aim of this paper was to examine the morphological and crystallographic anisotropy that develops...
This work presents the results of the numerical and physical modelling of the hot torsion of a hardl...
International audienceThe average rotations of 157 individual grains measured in an Al–0.1%Mn polycr...
The effect of strain reversal on hardening due to high pressure torsion (HPT) was investigated using...
Accurate predictions of the microstructure evolution of thennomechanically processed metals and allo...
An Al–0.1% Mg alloy is processed by high‐pressure torsion (HPT) at room temperature. The Al–0.1% Mg ...
The effects of strain path reversal on the macroscopic orientation of microbands in AA5052 have been...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
Severe plastic deformation (SPD) of metals to obtain ultra-fine or even nano-sized grains has proven...
Of considerable importance to the generation of ultrafine microstructures is the development of high...
A study of strain path related effects on recrystallisation in aluminium has been carried out. The r...
Microstructural engineering is at the core of a never ending quest for better performing materials. ...
Severe plastic deformation imposed under high hydrostatic pressure introduces a considerable disloca...
In this study, the local texture evolution during high pressure torsion (HPT) deformation of aluminu...
International audienceThe development of intra-grain orientation distributions is analysed for 92 in...
The aim of this paper was to examine the morphological and crystallographic anisotropy that develops...
This work presents the results of the numerical and physical modelling of the hot torsion of a hardl...
International audienceThe average rotations of 157 individual grains measured in an Al–0.1%Mn polycr...
The effect of strain reversal on hardening due to high pressure torsion (HPT) was investigated using...
Accurate predictions of the microstructure evolution of thennomechanically processed metals and allo...
An Al–0.1% Mg alloy is processed by high‐pressure torsion (HPT) at room temperature. The Al–0.1% Mg ...
The effects of strain path reversal on the macroscopic orientation of microbands in AA5052 have been...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
Severe plastic deformation (SPD) of metals to obtain ultra-fine or even nano-sized grains has proven...
Of considerable importance to the generation of ultrafine microstructures is the development of high...