Metal additive manufacturing (AM) technology is maturing. Although currently slower and less reliable than traditional production methods, AM systems shine when producing parts …
Owing to the high optical reflectivity of copper, silver, and gold in the infrared region, high laser power is required for laser-based additive manufacturing (L-AM). This increases the …
The ability to design complex copper (Cu) parts into the most efficient thermal structures is an old dream, but difficult to realize with conventional manufacturing techniques. The recent …
MR Campagnoli, M Galati, A Saboori - Journal of Manufacturing Processes, 2021 - Elsevier
The high electrical and thermal conductivities make copper the most suitable material for producing components where a high heat transfer capability is required. The material …
Laser powder bed fusion (L-PBF) additive manufacturing was utilized to fabricate high- strength copper (Cu) alloys through inoculation of pure Cu powder with cobalt (Co) …
Q Tan, M Zhang - Materials Science and Engineering: R: Reports, 2024 - Elsevier
Powder-based additive manufacturing (AM) is revolutionizing the fabrication of advanced engineering metallic materials, including aluminium (Al) alloys, which are the workhorse …
Although multiple-material additive manufacturing has progressed rapidly over the last few years, little progress has been made so far on the additive manufacturing of metal/polymer …
Additive manufacturing (AM), known as 3D printing, enables rapid fabrication of geometrically complex copper (Cu) components for electrical conduction and heat …
R Bidulsky, FS Gobber, J Bidulska, M Ceroni, T Kvackaj… - Metals, 2021 - mdpi.com
In the last years, functionalized powders are becoming of increasing interest in additive manufacturing (particularly in laser powder bed fusion processing, L-PBF), due to their …