AbstractThe cyclic deformation behavior of ultra fine grained copper after 7 cycles of accumulative roll bonding (ARB) have been systematically investigated under both load controlled and total strain controlled tests. The composite microstructure found in the as-ARBed samples has lead to unique behavior of this material. Cyclic softening as well as cyclic creep has been observed in asymmetrical cyclic tests. Grain coarsening was observed under both load controlled and total strain controlled tests. Cyclic softening behavior has been attributed to the grain coarsening phenomenon in the material. Surface damage due to shear banding was found to be the major failure mechanism. In addition, the coarsened grains have been detected to locate nea...
Severe plastic deformation is a new method to produce ultrafine grain materials with enhanced mechan...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
The cyclic mechanical properties and microstructural stability of severe plastically deformed copper...
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 ...
The improvement in mechanical strength offered by ultra fine- (UF) and nanocrystalline (NC) sized gr...
A systematic investigation of the cyclic deformation behavior of OFHC copper processed by 7 cycles o...
The composite microstructure found in ARBed materials has yielded cyclic softening and cyclic creep ...
Accumulative Roll-Bonding (ARB) is one of the more recently developed techniques capable of producin...
It is well known that the characteristic length scale in ultra-fine grained and nanocrystalline meta...
AbstractStability of microstructure of ultrafine-grained materials under cyclic loading is a crucial...
The influence of stress- and strain-controlled loading on microstructure and cyclic plastic behaviou...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
Accumulative Roll Bonding (ARB), which is a process of severe plastic deformation (SPD), was applie...
Pure copper sheets were heavily deformed up to equivalent strain of 4.8 by the accumulative roll-bon...
Severe plastic deformation is a new method to produce ultrafine grain materials with enhanced mechan...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
The cyclic mechanical properties and microstructural stability of severe plastically deformed copper...
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 ...
The improvement in mechanical strength offered by ultra fine- (UF) and nanocrystalline (NC) sized gr...
A systematic investigation of the cyclic deformation behavior of OFHC copper processed by 7 cycles o...
The composite microstructure found in ARBed materials has yielded cyclic softening and cyclic creep ...
Accumulative Roll-Bonding (ARB) is one of the more recently developed techniques capable of producin...
It is well known that the characteristic length scale in ultra-fine grained and nanocrystalline meta...
AbstractStability of microstructure of ultrafine-grained materials under cyclic loading is a crucial...
The influence of stress- and strain-controlled loading on microstructure and cyclic plastic behaviou...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
Accumulative Roll Bonding (ARB), which is a process of severe plastic deformation (SPD), was applie...
Pure copper sheets were heavily deformed up to equivalent strain of 4.8 by the accumulative roll-bon...
Severe plastic deformation is a new method to produce ultrafine grain materials with enhanced mechan...
A deeper understanding of the mechanical behavior of ultra-fine (UF) and nanocrystalline (NC) graine...
The cyclic mechanical properties and microstructural stability of severe plastically deformed copper...