Components manufactured via Wire + Arc Additive Manufacturing are usually characterised by large columnar grains. This can be mitigated by introducing in-process cold rolling; in fact, the associated local plastic deformation leads to a reduction of distortion and residual stresses, and to microstructural refinement. In this research, inter-pass rolling was applied with a load of 50 kN to a tantalum linear structure to assess rolling’s effectiveness in changing the grain structure from columnar to equiaxed, as well as in refining the grain size. An average grain size of 650 μm has been obtained after five cycles of inter-pass rolling and deposition. When the deformed layer was reheated during the subsequent deposition, recrystallisation occ...
Functionally graded components are usually preferred for severe and critical service conditions, tha...
Despite the high efficiency and low cost of wire + arc additive manufacture (WAAM), the epitaxial gr...
Inferior mechanical properties and severe anisotropy behavior of wire + arc additive manufactured (W...
An innovative way of producing large-scale unalloyed tantalum parts, based on the Wire + Arc Additiv...
The advent of the next industrial revolution is clearly represented by the constant maturation of ad...
In Additive Manufacture (AM), with the widely used titanium alloy Ti–6Al–4V, the solidification cond...
Mechanical property anisotropy is one of the issues that are limiting the industrial adoption of add...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufac...
In-process deformation methods such as rolling can be used to refine the large columnar grains that ...
Cold rolling can be used in-process or post-process to improve microstructure, mechanical properties...
Wire + Arc Additive Manufacturing (WAAM) is a technology potentially offering reduction of material ...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufa...
The manufacturing of refractory-metals components presents some limitations induced by the materials...
Wire + arc additive manufacture (WAAM) was applied to produce INCONEL 718 superalloy (IN718) compone...
Wire+Arc Additive Manufacturing is very suitable for the production of large scale aluminium parts....
Functionally graded components are usually preferred for severe and critical service conditions, tha...
Despite the high efficiency and low cost of wire + arc additive manufacture (WAAM), the epitaxial gr...
Inferior mechanical properties and severe anisotropy behavior of wire + arc additive manufactured (W...
An innovative way of producing large-scale unalloyed tantalum parts, based on the Wire + Arc Additiv...
The advent of the next industrial revolution is clearly represented by the constant maturation of ad...
In Additive Manufacture (AM), with the widely used titanium alloy Ti–6Al–4V, the solidification cond...
Mechanical property anisotropy is one of the issues that are limiting the industrial adoption of add...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufac...
In-process deformation methods such as rolling can be used to refine the large columnar grains that ...
Cold rolling can be used in-process or post-process to improve microstructure, mechanical properties...
Wire + Arc Additive Manufacturing (WAAM) is a technology potentially offering reduction of material ...
Wire + arc additive manufacturing (WAAM), unlike most other additive techniques, targets the manufa...
The manufacturing of refractory-metals components presents some limitations induced by the materials...
Wire + arc additive manufacture (WAAM) was applied to produce INCONEL 718 superalloy (IN718) compone...
Wire+Arc Additive Manufacturing is very suitable for the production of large scale aluminium parts....
Functionally graded components are usually preferred for severe and critical service conditions, tha...
Despite the high efficiency and low cost of wire + arc additive manufacture (WAAM), the epitaxial gr...
Inferior mechanical properties and severe anisotropy behavior of wire + arc additive manufactured (W...