most citedMicrostructure and thermal properties of unalloyed tungsten deposited by Wire + Arc Additive Manufacturing

50 citations · 53 across the 3 of their papers we have counts for

collaborators

4 papers

physics.app-ph201950 cited

Microstructure and thermal properties of unalloyed tungsten deposited by Wire + Arc Additive Manufacturing

Gianrocco Marinelli, Filomeno Martina, Supriyo Ganguly +5

Tungsten is considered as one of the most promising materials for nuclear fusion reactor chamber applications. Wire + Arc Additive Manufacturing has already demonstrated the abilit…

physics.app-ph20193 cited

Development of Wire + Arc Additive Manufacturing for the production of large-scale unalloyed tungsten components

Gianrocco Marinelli, Filomeno Martina, Supriyo Ganguly +1

The manufacturing of refractory-metals components presents some limitations induced by the materials characteristic low-temperature brittleness and high susceptibility to oxidation…

physics.app-ph2019

Effect of shielding gas composition and welding speed on autogenous welds of unalloyed tungsten plates

Gianrocco Marinelli, Filomeno Martina, Supriyo Ganguly +1

Tungsten usually exhibits poor weldability and marked brittleness at room temperature. This cause tungsten welds to be affected by the evolution of cracks along the weld bead, whic…

physics.app-ph2018

The Effect of Thermal History on Microstructural Evolution, Cold-Work Refinement and α/\b{eta} Growth in Ti-6Al-4V Wire + Arc AM

Jan Hönnige, Paul Colegrove, Phil Prangnell +2

Wire + arc additive manufacture (WAAM) is an attractive method for manufacturing large-scale aerospace components, however the microstructural changes that occur and the effect of…