The improvement in mechanical strength offered by ultra fine- (UF) and nanocrystalline (NC) sized grains is very attractive for potential applications of structural metals. Accumulative Roll-Bonding (ARB) is one of the promising new techniques for producing bulk UF grained metals. There are numerous reports on the monotonic mechanical behavior of various ARBed metals, however there are few, if any, on the cyclic deformation behavior of such metals. The primary objective of this study is to investigate the cyclic deformation behaviour and the related micro-mechanisms of ARBed metals from a fundamental perspective. To achieve this, the microstructure and the deformation behavior of commercial purity aluminum, OFHC copper, and DLP copper after...
In this work the microstructural features of pure copper were studied using two methods of severe pl...
Accumulative roll bonding (ARB) is a severe plastic deformation process for sheet metals. The proces...
Pure copper sheets were heavily deformed up to equivalent strain of 4.8 by the accumulative roll-bon...
The improvement in mechanical strength offered by ultra fine- (UF) and nanocrystalline (NC) sized gr...
Accumulative Roll-Bonding (ARB) is one of the more recently developed techniques capable of producin...
The cyclic deformation behavior of ultra fine grained copper after 7 cycles of accumulative roll bon...
AbstractThe cyclic deformation behavior of ultra fine grained copper after 7 cycles of accumulative ...
A systematic investigation of the cyclic deformation behavior of OFHC copper processed by 7 cycles o...
It is well known that the characteristic length scale in ultra-fine grained and nanocrystalline meta...
With the increase of interest in using ultra-fine and nano-grained metals for structural purposes, t...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
The composite microstructure found in ARBed materials has yielded cyclic softening and cyclic creep ...
Severe plastic deformation is a new method to produce ultrafine grain materials with enhanced mechan...
The cyclic mechanical properties and microstructural stability of severe plastically deformed copper...
In this work the microstructural features of pure copper were studied using two methods of severe pl...
Accumulative roll bonding (ARB) is a severe plastic deformation process for sheet metals. The proces...
Pure copper sheets were heavily deformed up to equivalent strain of 4.8 by the accumulative roll-bon...
The improvement in mechanical strength offered by ultra fine- (UF) and nanocrystalline (NC) sized gr...
Accumulative Roll-Bonding (ARB) is one of the more recently developed techniques capable of producin...
The cyclic deformation behavior of ultra fine grained copper after 7 cycles of accumulative roll bon...
AbstractThe cyclic deformation behavior of ultra fine grained copper after 7 cycles of accumulative ...
A systematic investigation of the cyclic deformation behavior of OFHC copper processed by 7 cycles o...
It is well known that the characteristic length scale in ultra-fine grained and nanocrystalline meta...
With the increase of interest in using ultra-fine and nano-grained metals for structural purposes, t...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
The composite microstructure found in ARBed materials has yielded cyclic softening and cyclic creep ...
Severe plastic deformation is a new method to produce ultrafine grain materials with enhanced mechan...
The cyclic mechanical properties and microstructural stability of severe plastically deformed copper...
In this work the microstructural features of pure copper were studied using two methods of severe pl...
Accumulative roll bonding (ARB) is a severe plastic deformation process for sheet metals. The proces...
Pure copper sheets were heavily deformed up to equivalent strain of 4.8 by the accumulative roll-bon...