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September 12, 20250 citations

Metal Powders In Additive Manufacturing: An Approach To Sustainable Production And Recycling

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MEMeher Zaied EdouardEREmmanuel De La RochefoucauldCGCamille De Giorgio

Key Points

  • Recycling out-of-specification metal powders can significantly reduce waste and environmental impact.
  • Fine powders are transformed into ingots and re-atomized using the PAM-CHR process, improving sustainability.
  • Coarse powders can be recycled directly using the VIGA process, enhancing production efficiency.
  • These recycling techniques support more sustainable practices within metal additive manufacturing.

Abstract

Gas atomization is the primary technique to produce powders used in metal additive manufacturing. The size of gas atomized powders typically ranges from 1 to 150 µm. However, for laser bed powder fusion (LBPF), mainly powders within the 20-63 µm range are used. Consequently, recycling powders that fall outside this specification presents significant opportunities for creating a more sustainable and environmentally friendly supply chain. Reprocessing these out-of-specification powders can reduce waste, lower production costs, and minimize the environmental impact associated with the extraction and processing of raw materials.Two recycling routes are explored in this study. The first involves transforming fine powders (14?µm) into ingots using the casting process Plasma Arc Melting - Cold Hearth Refining (PAM-CHR), followed by a re-atomization with the Electrode Induction Melting Gas Atomization (EIGA) process. The second route recycles coarse powders (>63?µm) directly using the Vacuum Induction Melting Gas Atomization (VIGA) process. These approaches enhance resource

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Cite This Study

Edouard et al. (2025) studied this question.

synapsesocial.com/papers/68d44a4731b076d99fa53ec1https://doi.org/10.59499/ep256765901
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