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Impact of Defects in Powder Feedstock Materials on Microstructure of 304L and 316L Stainless Steel Produced by Additive Manufacturing

  • Benjamin Mark Morrow
  • , Thomas J Lienert
  • , Cameron M Knapp
  • , Jacob O. Sutton
  • , Michael J. Brand
  • , Robin Montoya Pacheco
  • , Veronica Livescu
  • , John S. Carpenter
  • , George Thompson Gray

Research output: Contribution to journalArticlepeer-review

81 Scopus citations

Abstract

Recent work in both 304L and 316L stainless steel produced by additive manufacturing (AM) has shown that in addition to the unique, characteristic microstructures formed during the process, a fine dispersion of sub-micron particles, with a chemistry different from either the powder feedstock or the expected final material, are evident in the final microstructure. Such fine-scale features can only be resolved using transmission electron microscopy (TEM) or similar techniques. The present work uses electron microscopy to study both the initial powder feedstock and microstructures in final AM parts. Special attention is paid to the chemistry and origin of these nanoscale particles in several different metal alloys, and their impact on the final build. Comparisons to traditional, wrought material will be made.

Original languageEnglish
Pages (from-to)3637-3650
Number of pages14
JournalMetallurgical Transactions A
Volume49
Issue number8
DOIs
StatePublished - Aug 1 2018

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