Wire + arc additive manufacturing (WAAM) is a modern manufacturing process that has opened new possibilities for rapid builds and reductions in material wastage. This paper explores residual stress in WAAM Ti-6Al-4V walls built using three different deposition strategies: single bead, parallel path, and oscillation path. The effect of interlayer hammer peening and interlayer temperature was investigated for the single bead walls. We also examined the residual stress in compact-tension (C(T)) coupons extracted from large builds (walls) with crack orientation either parallel with or perpendicular to the build direction. This type of sample is often used for the measurement of the fatigue crack growth rate. The contour method was used for expe...
This study presents a numerical approach to predict the influence of the residual stresses on Fatigu...
Wire+arc additive manufacturing is a technique suitable for the deposition of large components; a v...
Nowadays, there is a great manufacturing trend in producing higher quality net-shape components of c...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufac...
Additive Manufacture of metals is an area of great interest to many industrial sectors. All metal ad...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Additively manufactured intersections have the theoretical risk to contain hydrostatic tensile resid...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufa...
This paper investigates the influence of two different deposition strategies, oscillation and parall...
Fatigue crack propagation tests of Ti‐6Al‐4V fabricated by the Wire+Arc Additive Manufacturing (WAAM...
Additive Manufacturing (AM) is known as an alternative method to conventional manufacturing processe...
Wire arc additive manufacturing (WAAM) is a novel manufacturing technique by which high strength met...
In additive manufacturing, technologies based on the fusion of a metallic wire using an electric arc...
Wire + arc additive manufacturing components contain significant residual stresses, which manifest i...
This study presents a numerical approach to predict the influence of the residual stresses on Fatigu...
Wire+arc additive manufacturing is a technique suitable for the deposition of large components; a v...
Nowadays, there is a great manufacturing trend in producing higher quality net-shape components of c...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufac...
Additive Manufacture of metals is an area of great interest to many industrial sectors. All metal ad...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Additively manufactured intersections have the theoretical risk to contain hydrostatic tensile resid...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufa...
This paper investigates the influence of two different deposition strategies, oscillation and parall...
Fatigue crack propagation tests of Ti‐6Al‐4V fabricated by the Wire+Arc Additive Manufacturing (WAAM...
Additive Manufacturing (AM) is known as an alternative method to conventional manufacturing processe...
Wire arc additive manufacturing (WAAM) is a novel manufacturing technique by which high strength met...
In additive manufacturing, technologies based on the fusion of a metallic wire using an electric arc...
Wire + arc additive manufacturing components contain significant residual stresses, which manifest i...
This study presents a numerical approach to predict the influence of the residual stresses on Fatigu...
Wire+arc additive manufacturing is a technique suitable for the deposition of large components; a v...
Nowadays, there is a great manufacturing trend in producing higher quality net-shape components of c...