SummaryThe present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/anodized Al based multilayered composite by the accumulative roll bonding (ARB) process. The ultrafine grained multilayer composite was successfully roll bonded by using binary Mg–2%Zn alloy, pure aluminium and anodized aluminium at 300°C with 50% reduction up to 5 passes. Multilayered composites are characterized with respect to microstructure, mechanical properties. Density of the ARB processed Mg–Zn/Al multilayered composites have been found to be 21% reduction of weight as compare to pure Al. The composite with anodized Al showed better tensile strength and microhardness as compare to Mg–Zn/Al multilayered composites
International audienceThe microstructure and texture of an Al1050/AZ31/Al1050 laminated composite fa...
The Aluminum has special properties such as light weight, ductile and a lower melting point. It has ...
The present study describes the course of microstructure evolution during accumulative roll bonding ...
The present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/anodized...
SummaryThe present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/a...
Al(1060)/Mg(AZ31)/Al(1060) multilayered composite was successfully produced using an accumulative ro...
Aluminum and magnesium alloys are lightweight materials with outstanding technical uses. Due to thei...
A multilayer Al5052–Cu composite is prepared by accumulative roll bonding (ARB) and the microstructu...
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding ...
In this research, Al/Cu/Mg multilayered composites were produced by the accumulative roll bonding (A...
A multi-layered complex aluminum alloy was successfully fabricated by three-layer stack accumulative...
Multilayered aluminium alloy composites were produced by accumulative roll bonding (ARB) to very hig...
Magnesium/aluminium clad bars were fabricated by compound casting and multi-pass warm caliber rollin...
This work aims to investigate whether accumulative roll bonding (ARB) is an effective grain refineme...
For many years, there have been long-standing interests in studying multilayer metals. And many kind...
International audienceThe microstructure and texture of an Al1050/AZ31/Al1050 laminated composite fa...
The Aluminum has special properties such as light weight, ductile and a lower melting point. It has ...
The present study describes the course of microstructure evolution during accumulative roll bonding ...
The present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/anodized...
SummaryThe present study aims at development of light weight, high strength Mg–2%Zn/Al and Mg–2%Zn/a...
Al(1060)/Mg(AZ31)/Al(1060) multilayered composite was successfully produced using an accumulative ro...
Aluminum and magnesium alloys are lightweight materials with outstanding technical uses. Due to thei...
A multilayer Al5052–Cu composite is prepared by accumulative roll bonding (ARB) and the microstructu...
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding ...
In this research, Al/Cu/Mg multilayered composites were produced by the accumulative roll bonding (A...
A multi-layered complex aluminum alloy was successfully fabricated by three-layer stack accumulative...
Multilayered aluminium alloy composites were produced by accumulative roll bonding (ARB) to very hig...
Magnesium/aluminium clad bars were fabricated by compound casting and multi-pass warm caliber rollin...
This work aims to investigate whether accumulative roll bonding (ARB) is an effective grain refineme...
For many years, there have been long-standing interests in studying multilayer metals. And many kind...
International audienceThe microstructure and texture of an Al1050/AZ31/Al1050 laminated composite fa...
The Aluminum has special properties such as light weight, ductile and a lower melting point. It has ...
The present study describes the course of microstructure evolution during accumulative roll bonding ...