Severe plastic deformation (SPD) has come to the fore over the last decades as a potent way to improve the mechanical and physical properties of metallic materials. The use of such techniques for polymers has a long history and can be proud of its significant achievements, but they are less familiar to the metal research community. This review provides insights in the use of SPD techniques to modify the microstructure and properties of polymers and summarizes the salient results obtained in this area. It is hoped that this exposé will be of interest to the broader materials community, beyond the borders of polymer research.</p
Processing through the application of severe plastic deformation (SPD) provides an opportunity for a...
This paper provides an introduction in the field of severe plastic deformation (SPD). First of all t...
Severe plastic deformation techniques are known to produce grain sizes up to submicron level. This l...
Severe plastic deformation (SPD) has come to the fore over the last decades as a potent way to impro...
Severe plastic deformation (SPD) is a very attractive research field for metallic materials because ...
International audienceSevere plastic deformation (SPD) is effective in producing bulk ultrafine-grai...
Severe plastic deformation (SPD) has established itself as a potent means of producing bulk ultrafin...
Grain size is recognized as a key microstructural factor affecting mechanical and, to some extent, p...
It is well established that processing through the application of severe plastic deformation (SPD) p...
Severe plastic deformation (SPD) is one of the meth-ods of obtaining very fine crystalline structure...
In recent years a breakthrough has developed in the studies of nanostructured metals and alloys as a...
This paper presents a current research trend for micro- and nano-structure controls using severe pla...
In this review, severe plastic deformation (SPD) is considered as a materials processing technology....
Scientific innovation is often driven by novel processing capabilities, which enable the production ...
The recent decade was marked by significant advances in the development of severe plastic deformatio...
Processing through the application of severe plastic deformation (SPD) provides an opportunity for a...
This paper provides an introduction in the field of severe plastic deformation (SPD). First of all t...
Severe plastic deformation techniques are known to produce grain sizes up to submicron level. This l...
Severe plastic deformation (SPD) has come to the fore over the last decades as a potent way to impro...
Severe plastic deformation (SPD) is a very attractive research field for metallic materials because ...
International audienceSevere plastic deformation (SPD) is effective in producing bulk ultrafine-grai...
Severe plastic deformation (SPD) has established itself as a potent means of producing bulk ultrafin...
Grain size is recognized as a key microstructural factor affecting mechanical and, to some extent, p...
It is well established that processing through the application of severe plastic deformation (SPD) p...
Severe plastic deformation (SPD) is one of the meth-ods of obtaining very fine crystalline structure...
In recent years a breakthrough has developed in the studies of nanostructured metals and alloys as a...
This paper presents a current research trend for micro- and nano-structure controls using severe pla...
In this review, severe plastic deformation (SPD) is considered as a materials processing technology....
Scientific innovation is often driven by novel processing capabilities, which enable the production ...
The recent decade was marked by significant advances in the development of severe plastic deformatio...
Processing through the application of severe plastic deformation (SPD) provides an opportunity for a...
This paper provides an introduction in the field of severe plastic deformation (SPD). First of all t...
Severe plastic deformation techniques are known to produce grain sizes up to submicron level. This l...