A multilayer Al5052–Cu composite is prepared by accumulative roll bonding (ARB) and the microstructure and mechanical properties are evaluated using optical microscopy, scanning electron microscopy (SEM), tensile tests, and micro-hardness measurements. The results show that the thickness (1000 μm) of copper layers of the initial sample is reduced to ~7 μm after the fifth ARB cycle, while the thickness of Al layer increases. With increasing number of ARB cycles, the microhardness of both aluminum and copper layers is significantly increased. The tensile strength of the sandwich is enhanced continiousely, and the maximum value of 566.5 MPa is achieved. The high strength of 566.5 MPa and ductility of 9.61% is achieved, which is ~47 and ~21% hi...
Laminated metal composites (LMCs) with alternating layers of commercial pure aluminum AA1050A and al...
This study was focused on microstructure development and mechanical properties of three-layered Al–C...
Aluminum and magnesium alloys are lightweight materials with outstanding technical uses. Due to thei...
In this study, ultrafine grained Al5052/Cu multilayered composite has been produced by accumulative ...
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding ...
The microstructure evolution, mechanical properties, and the fracture mode of Al/Al/Cu multilayer st...
For many years, there have been long-standing interests in studying multilayer metals. And many kind...
Cu/Nb multilayer composites with minimum individual layer thicknesses of ≈2.8 μm are achieved by acc...
A new severe plastic deformation (SPD) based technique entitled accumulative channel-die compression...
In this paper, Al1050/Al5052/SiC composite was manufactured via accumulative roll bonding (ARB) tech...
The present study describes the course of microstructure evolution during accumulative roll bonding ...
Ultrafine-grained Cu/Al/Ag composites were processed by an accumulative roll bonding (ARB) technique...
SummaryThe present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/a...
The present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/anodized...
Al(1060)/Mg(AZ31)/Al(1060) multilayered composite was successfully produced using an accumulative ro...
Laminated metal composites (LMCs) with alternating layers of commercial pure aluminum AA1050A and al...
This study was focused on microstructure development and mechanical properties of three-layered Al–C...
Aluminum and magnesium alloys are lightweight materials with outstanding technical uses. Due to thei...
In this study, ultrafine grained Al5052/Cu multilayered composite has been produced by accumulative ...
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding ...
The microstructure evolution, mechanical properties, and the fracture mode of Al/Al/Cu multilayer st...
For many years, there have been long-standing interests in studying multilayer metals. And many kind...
Cu/Nb multilayer composites with minimum individual layer thicknesses of ≈2.8 μm are achieved by acc...
A new severe plastic deformation (SPD) based technique entitled accumulative channel-die compression...
In this paper, Al1050/Al5052/SiC composite was manufactured via accumulative roll bonding (ARB) tech...
The present study describes the course of microstructure evolution during accumulative roll bonding ...
Ultrafine-grained Cu/Al/Ag composites were processed by an accumulative roll bonding (ARB) technique...
SummaryThe present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/a...
The present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/anodized...
Al(1060)/Mg(AZ31)/Al(1060) multilayered composite was successfully produced using an accumulative ro...
Laminated metal composites (LMCs) with alternating layers of commercial pure aluminum AA1050A and al...
This study was focused on microstructure development and mechanical properties of three-layered Al–C...
Aluminum and magnesium alloys are lightweight materials with outstanding technical uses. Due to thei...