This paper is focused on the formability of the aluminium alloy AA5083 deposited by wire arc additive manufacturing (WAAM). The presentation draws from metal deposition with a robotic welding system to mechanical and formability characterization by means of standard test specimens. Finite element analysis using porous metal plasticity is utilized to model strain hardening and the changes in porosity due to plastic deformation. Results show that the deposited aluminium alloy has excellent ductility and that its final stress response can significantly improve as a result of strain hardening. Voids resulting from metal deposition are closed by negative values of stress-triaxiality resulting from compression forming. The investigation is also a...
Wire and arc additive manufacture (WAAM) is a process in which an arc is used to melt and deposit be...
Wire arc additive manufacturing enables the production of near-net shape large-volume metallic compo...
Integrating wrought alloys into a wire and arc additively manufactured component is very beneficial...
This paper is focused on the formability of the aluminium alloy AA5083 deposited by wire arc additiv...
Within the scope of consumer-oriented production, individuality and cost-effectiveness are two essen...
Processing of aluminum alloys by wire arc additive manufacturing (WAAM) gained significant attention...
Additive manufacturing (AM) processes such as Wire-Arc Additive Manufacturing (WAAM) are highly flex...
Wire arc additive manufacturing (WAAM) of aluminium alloys is a rising technique for manufacturing l...
Wire+Arc Additive Manufacturing is very suitable for the production of large scale aluminium parts....
To meet lightweight demands, complex support or near-net shaped structures are increasingly applied ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...
The development of wire arc additive manufacturing (WAAM) provides a new solution for manufacturing ...
The proposed paper considers the opportunity of expanding the application area of wire arc additive ...
Wire-arc additive manufacturing is an additive manufacturing technology which allows for high deposi...
Due to the feasibility of economically producing large-scale metal components with relatively high d...
Wire and arc additive manufacture (WAAM) is a process in which an arc is used to melt and deposit be...
Wire arc additive manufacturing enables the production of near-net shape large-volume metallic compo...
Integrating wrought alloys into a wire and arc additively manufactured component is very beneficial...
This paper is focused on the formability of the aluminium alloy AA5083 deposited by wire arc additiv...
Within the scope of consumer-oriented production, individuality and cost-effectiveness are two essen...
Processing of aluminum alloys by wire arc additive manufacturing (WAAM) gained significant attention...
Additive manufacturing (AM) processes such as Wire-Arc Additive Manufacturing (WAAM) are highly flex...
Wire arc additive manufacturing (WAAM) of aluminium alloys is a rising technique for manufacturing l...
Wire+Arc Additive Manufacturing is very suitable for the production of large scale aluminium parts....
To meet lightweight demands, complex support or near-net shaped structures are increasingly applied ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...
The development of wire arc additive manufacturing (WAAM) provides a new solution for manufacturing ...
The proposed paper considers the opportunity of expanding the application area of wire arc additive ...
Wire-arc additive manufacturing is an additive manufacturing technology which allows for high deposi...
Due to the feasibility of economically producing large-scale metal components with relatively high d...
Wire and arc additive manufacture (WAAM) is a process in which an arc is used to melt and deposit be...
Wire arc additive manufacturing enables the production of near-net shape large-volume metallic compo...
Integrating wrought alloys into a wire and arc additively manufactured component is very beneficial...