Mechanical property anisotropy is one of the issues that are limiting the industrial adoption of additive manufacturing (AM) Ti-6Al-4V components. To improve the deposits’ microstructure, the effect of high-pressure interpass rolling was evaluated, and a flat and a profiled roller were compared. The microstructure was changed from large columnar prior beta grains that traversed the component to equiaxed grains that were between 56 and 139 μm in size. The repetitive variation in Widmanstätten alpha lamellae size was retained; however, with rolling, the overall size was reduced. A “fundamental study” was used to gain insight into the microstructural changes that occurred due to the combination of deformation and deposition. High-pressure inte...
The titanium alloy Ti–6Al–2Sn–4Zr–2Mo–0.1Si (Ti6242) has been deposited for the first time by a dire...
Wire + arc additive manufacturing components contain significant residual stresses, which manifest i...
Inter-pass deformation is an effective method for refining the coarse β-grain structure normally pro...
In-process deformation methods such as rolling can be used to refine the large columnar grains that ...
In Additive Manufacture (AM), with the widely used titanium alloy Ti–6Al–4V, the solidification cond...
Distortion, residual stress and mechanical property anisotropy are current challenges in additive ma...
Distortion, residual stress and mechanical property anisotropy are current challenges in additive ma...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Wire+arc additive manufacturing is a technique suitable for the deposition of large components; a v...
Wire arc additive manufacturing (WAAM) is a novel manufacturing technique by which high strength met...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufac...
Cold rolling can be used in-process or post-process to improve microstructure, mechanical properties...
Components manufactured via Wire + Arc Additive Manufacturing are usually characterised by large col...
Additively manufactured intersections have the theoretical risk to contain hydrostatic tensile resid...
The titanium alloy Ti–6Al–2Sn–4Zr–2Mo–0.1Si (Ti6242) has been deposited for the first time by a dire...
Wire + arc additive manufacturing components contain significant residual stresses, which manifest i...
Inter-pass deformation is an effective method for refining the coarse β-grain structure normally pro...
In-process deformation methods such as rolling can be used to refine the large columnar grains that ...
In Additive Manufacture (AM), with the widely used titanium alloy Ti–6Al–4V, the solidification cond...
Distortion, residual stress and mechanical property anisotropy are current challenges in additive ma...
Distortion, residual stress and mechanical property anisotropy are current challenges in additive ma...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Wire+arc additive manufacturing (WAAM) components are characterised by high residual stress due to ...
Wire+arc additive manufacturing is a technique suitable for the deposition of large components; a v...
Wire arc additive manufacturing (WAAM) is a novel manufacturing technique by which high strength met...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufac...
Cold rolling can be used in-process or post-process to improve microstructure, mechanical properties...
Components manufactured via Wire + Arc Additive Manufacturing are usually characterised by large col...
Additively manufactured intersections have the theoretical risk to contain hydrostatic tensile resid...
The titanium alloy Ti–6Al–2Sn–4Zr–2Mo–0.1Si (Ti6242) has been deposited for the first time by a dire...
Wire + arc additive manufacturing components contain significant residual stresses, which manifest i...
Inter-pass deformation is an effective method for refining the coarse β-grain structure normally pro...