2022
DOI: 10.1007/s11665-022-06994-z
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A Coaxial Wire-Feed Additive Manufacturing of Metal Components Using a Profile Electron Beam in Space Application

Abstract: Despite the variety of different methods of metal 3D printing on Earth, only a few of them can be realized in space. Processes that employ electron beam as a heat source and wire as a consumable material is among the most promising methods for these applications. But to date, such processes still have not been implemented in actual space operation, mainly due to the low accuracy and resolution of these 3D printed products that require significant post-processing for their intended use. Large and heavy hardware… Show more

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Cited by 12 publications
(1 citation statement)
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“…Despite differences in gravitational conditions, no discernible disparities were observed microgravity and normal gravity fabrications [35]. However, implementing directed energy deposition in space faces challenges due to cumbersome equipment, low limited resolution, and the need for significant post-processing [36]. Our team successfully utilized a low-power laser to melt metal filaments, employing an anti-gravity configuration on the ground to simulate space conditions.…”
Section: Metal 3d Printing In Spacementioning
confidence: 99%
“…Despite differences in gravitational conditions, no discernible disparities were observed microgravity and normal gravity fabrications [35]. However, implementing directed energy deposition in space faces challenges due to cumbersome equipment, low limited resolution, and the need for significant post-processing [36]. Our team successfully utilized a low-power laser to melt metal filaments, employing an anti-gravity configuration on the ground to simulate space conditions.…”
Section: Metal 3d Printing In Spacementioning
confidence: 99%