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Microstructure of laser metal deposited duplex stainless steel: Influence of shielding gas and heat treatment

Maria Asuncion Valiente Bermejo, Karthikeyan Thalavai Pandian

2021enduplex stainless steelsadditive manufacturinglaser metal depositiondirected energy depositionlaser beam additive manufacturing

Abstract

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This research work is the first step in evaluating the feasibility of producing industrial components by using Laser Metal Deposition with duplex stainless steel Wire (LMDw). The influence of Ar and N2 shielding gases was investigated in terms of nitrogen loss and in the microstructure and austenite content of different deposited geometries. The evolution of the microstructure in the build-up direction of the Ar and N2-shielded blocks was compared in the heat-treated and as-deposited conditions. The susceptibility for oxygen pick-up in the LMDw deposits was also analyzed, and oxygen was found to be in the range of conventional gas-shielded weldments. Nitrogen loss occurred when Ar-shielding was used; however, the use of N2-shielding prevented nitrogen loss. Austenite content was nearly doubled by using N2-shielding instead of Ar-shielding. The heat treatment resulted in an increase of the austenite content and of the homogeneity in the microstructure regardless of the shielding gas used. The similarity in microstructure and the low spread in the phase balance for the as-deposited geometries is a sign of having achieved a stable and consistent LMDw process in order to proceed with the build-up of more complex geometries closer to industrial full-size components.

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Cite This Work

@article{d1d77ebd-3514-4eec-a1cc-dc8f7cdf5d7f,
  title={Microstructure of laser metal deposited duplex stainless steel: Influence of shielding gas and heat treatment},
  author={Maria Asuncion Valiente Bermejo and Karthikeyan Thalavai Pandian},
  year={2021},
  language={en}
}
TY  - JOUR
TI  - Microstructure of laser metal deposited duplex stainless steel: Influence of shielding gas and heat treatment
AU  - Maria Asuncion Valiente Bermejo
AU  - Karthikeyan Thalavai Pandian
PY  - 2021
LA  - en
ER  -

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