Severe plastic deformation (SPD) techniques are known to promote exceptional material properties by inducing significant modifications in the metallic material microstructure. In particular, severe plastic deformation (SPD) techniques are known to effectively refine the initial grain structure of f.c.c. and b.c.c. crystals to sub-micrometre levels. Pure metals are mostly appropriate to study the early stages of the microstructure modifications induced by SPD. This is chiefly due to the possibility to isolate the material strengthening due to dislocations from other possible microstructure features. To this purpose, a high-purity 6N-aluminum (99.9999% purity) was here used to study the minimum necessary strain to form crystal boundaries (tha...
Severe plastic deformation (SPD) techniques are among the most effective deformation modes of introd...
The microstructure of ultrafine-grained fcc metals (Al, Al–Mg alloys, Cu and Ni) produced by applyin...
Deformation bands (DBs) formed in metals even in single crystals are known to give rise to the micro...
Severe plastic deformation (SPD) techniques are known to promote exceptional material properties by ...
Severe plastic deformation (SPD) of metals to obtain ultra-fine or even nano-sized grains has proven...
In this paper, severe plastic deformation (SPD) is applied to commercially pure aluminum. Monotonic ...
Severe plastic deformation (SPD) techniques are known to promote exceptional mechanical properties d...
Numerous investigations have demonstrated that intense plastic deformation is an attractive procedur...
Severe plastic deformation (SPD) is one of the most promising methods for fabricating bulk ultrafine ...
The current investigation presents a breakdown analysis of the elastoplastic behavior of commerciall...
<div><p>The formation of dislocation cells has a significant impact on the strain hardening behaviou...
Ultrafine-grained and even nanostructured materials can be fabricated using severe plastic deformati...
Grain size is recognized as a key microstructural factor affecting mechanical and, to some extent, p...
Microstructural engineering is at the core of a never ending quest for better performing materials. ...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
Severe plastic deformation (SPD) techniques are among the most effective deformation modes of introd...
The microstructure of ultrafine-grained fcc metals (Al, Al–Mg alloys, Cu and Ni) produced by applyin...
Deformation bands (DBs) formed in metals even in single crystals are known to give rise to the micro...
Severe plastic deformation (SPD) techniques are known to promote exceptional material properties by ...
Severe plastic deformation (SPD) of metals to obtain ultra-fine or even nano-sized grains has proven...
In this paper, severe plastic deformation (SPD) is applied to commercially pure aluminum. Monotonic ...
Severe plastic deformation (SPD) techniques are known to promote exceptional mechanical properties d...
Numerous investigations have demonstrated that intense plastic deformation is an attractive procedur...
Severe plastic deformation (SPD) is one of the most promising methods for fabricating bulk ultrafine ...
The current investigation presents a breakdown analysis of the elastoplastic behavior of commerciall...
<div><p>The formation of dislocation cells has a significant impact on the strain hardening behaviou...
Ultrafine-grained and even nanostructured materials can be fabricated using severe plastic deformati...
Grain size is recognized as a key microstructural factor affecting mechanical and, to some extent, p...
Microstructural engineering is at the core of a never ending quest for better performing materials. ...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
Severe plastic deformation (SPD) techniques are among the most effective deformation modes of introd...
The microstructure of ultrafine-grained fcc metals (Al, Al–Mg alloys, Cu and Ni) produced by applyin...
Deformation bands (DBs) formed in metals even in single crystals are known to give rise to the micro...