Effect of tellurium on the microstructure and mechanical properties of Fe-14Cr oxide-dispersion-strengthened steels produced by additive manufacturing

Authors
Arkhurst, B.M.Bae, Jee HwanNa, M.Y.Chang, H.J.Kim, H.G.Kim, I.H.Ryu, H.J.Kim, J.H.
Issue Date
2021-12
Publisher
Allerton Press Inc.
Citation
Journal of Materials Science & Technology, v.95, pp.114 - 126
Abstract
Conventionally, Te has primarily been used to improve the machinability of steel and its alloys. In this work, Te was used to refine the grains of an oxide-dispersion-strengthened (ODS) steel produced by additive manufacturing (AM) with fixed processing parameters. Addition of Te to the raw powder produced an ODS steel with a fine-grained microstructure, in contrast to the ODS steel manufactured without Te. Moreover, the addition of Te resulted in superior yield strength and ultimate tensile strength, which was attributed to the combined effects of grain refinement and the finer nanoparticles (NPs) composed of Te-rich composite NPs and Cr-rich NPs. For the first time, the AM technique was used to obtain grain and nanoparticle sizes of ~3.4 ?m and 6 nm, respectively, from the Te-added ODS steel ? 2021
Keywords
3D printers; Additives; Binary alloys; Breeding blankets; Chromium alloys; Chromium compounds; Dispersions; Grain refinement; Iron oxides; Microstructure; Nanoparticles; Tellurium compounds; Tensile strength; Combined effect; Fine-grained microstructure; Microstructure and mechanical properties; Nanoparticle (NPs); Nanoparticle sizes; Oxide dispersion strengthened steel; Processing parameters; Ultimate tensile strength; Chromium steel; Additive manufacturing; Directed energy deposition; Nanoparticle; Oxide-dispersion-strengthened steel; Tellurium
ISSN
1005-0302
URI
https://pubs.kist.re.kr/handle/201004/116104
DOI
10.1016/j.jmst.2021.03.068
Appears in Collections:
KIST Article > 2021
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