In this paper, we present mechanical testing and microstructural analysis carried out on a number of layered composites of aluminium 1050 and pure copper foils. The parts were made by an additive manufacturing process termed as Composite Metal Foil Manufacturing. It is a combination of Laminated Object Manufacturing and brazing. The effectiveness of the process is validated with lap shear testing, peel testing, microstructural analysis and tensile testing. Joining dissimilar metals is generally difficult but the process is capable of achieving this goal with ease. Tests were carried out on lap joints with varying thickness to assess the effect on the bond. Tensile lap shear strength was also calculated using thicker plates by observing cohe...
To meet the increasing demand of multifunctional applications of microcomponents, metal composites h...
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding ...
A multilayer Al5052–Cu composite is prepared by accumulative roll bonding (ARB) and the microstructu...
A number of different parts for mechanical testing were produced using composite metal foil manufact...
This paper deals with the production and experimental investigation of very thin aluminium 1050 grad...
Foils of aluminum 1050 H14 ½ hard temper and 99.9% copper with 500-micron thickness have been used t...
In this paper, peel and tensile tests were carried out on specimens that were made using a new addit...
The paper presents an additive manufacturing process for the production of metal and composite parts...
The majority of additive manufacturing methods use different materials for the production of parts. ...
The paper presents finite element modelling and thermomechanical analysis on the tensile properties ...
International audienceThe present study investigates the mechanical behavior of severely plastic-def...
To meet the increasing demand of multifunctional applications of microcomponents, metal composites h...
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding ...
A multilayer Al5052–Cu composite is prepared by accumulative roll bonding (ARB) and the microstructu...
A number of different parts for mechanical testing were produced using composite metal foil manufact...
This paper deals with the production and experimental investigation of very thin aluminium 1050 grad...
Foils of aluminum 1050 H14 ½ hard temper and 99.9% copper with 500-micron thickness have been used t...
In this paper, peel and tensile tests were carried out on specimens that were made using a new addit...
The paper presents an additive manufacturing process for the production of metal and composite parts...
The majority of additive manufacturing methods use different materials for the production of parts. ...
The paper presents finite element modelling and thermomechanical analysis on the tensile properties ...
International audienceThe present study investigates the mechanical behavior of severely plastic-def...
To meet the increasing demand of multifunctional applications of microcomponents, metal composites h...
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding ...
A multilayer Al5052–Cu composite is prepared by accumulative roll bonding (ARB) and the microstructu...