Fabricating corrosion-resistant FeAl coating used in liquid lead-bismuth eutectic by direct energy deposition

FeAl coatings were fabricated on 316 L stainless steel by direct energy deposition (DED) and evaluated in 550 °C liquid lead-bismuth eutectic (LBE) at different dissolved oxygen (DO) concentrations. The coatings formed stable and protective oxide film, demonstrating excellent corrosion resistance over the investigated DO concentrations (10 −7 and 10 −6 wt%). Thermodynamic analysis further reveals that oxidation is thermodynamically favored. Moreover, the low Al containing coatings form a porous inner Al 2 O 3 layer (IOL) accompanied by LBE penetration, leading to progressive film thickening during exposure. In contrast, the high Al containing coatings form a dense and continuous Al 2 O 3 IOL with negligible change in film thickness. The model predicts an approximate transition composition of 40.8 at% Al for the formation of a dense and continuous Al 2 O 3 IOL, while a higher theoretical value of 56.7 at% Al is predicted for the formation of a single continuous Al 2 O 3 layer. The FeAl coating can form protective Al 2 O 3 film and maintain structure stability in liquid LBE, exhibiting great potential for engineering application.

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Publication Details

Journal
Corrosion Science
Published
2026-09-15
DOI
https://doi.org/10.1016/j.corsci.2026.114264
Primary Topic
High-Temperature Coating Behaviors
Type
article
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Fabricating corrosion-resistant FeAl coating used in liquid lead-bismuth eutectic by direct energy deposition

Shihao Zhang, Qian Zhang, Wenjun Kuang, Xing Gong et al.
Corrosion Science
High-Temperature Coating Behaviors
article

Fabricating corrosion-resistant FeAl coating used in liquid lead-bismuth eutectic by direct energy deposition

Shihao Zhang, Qian Zhang, Wenjun Kuang, Xing Gong, En-Hou Han
article en

Abstract

FeAl coatings were fabricated on 316 L stainless steel by direct energy deposition (DED) and evaluated in 550 °C liquid lead-bismuth eutectic (LBE) at different dissolved oxygen (DO) concentrations. The coatings formed stable and protective oxide film, demonstrating excellent corrosion resistance over the investigated DO concentrations (10 −7 and 10 −6 wt%). Thermodynamic analysis further reveals that oxidation is thermodynamically favored. Moreover, the low Al containing coatings form a porous inner Al 2 O 3 layer (IOL) accompanied by LBE penetration, leading to progressive film thickening during exposure. In contrast, the high Al containing coatings form a dense and continuous Al 2 O 3 IOL with negligible change in film thickness. The model predicts an approximate transition composition of 40.8 at% Al for the formation of a dense and continuous Al 2 O 3 IOL, while a higher theoretical value of 56.7 at% Al is predicted for the formation of a single continuous Al 2 O 3 layer. The FeAl coating can form protective Al 2 O 3 film and maintain structure stability in liquid LBE, exhibiting great potential for engineering application.

Corrosion ScienceVol. 272
South China University of Technology (CN)
Openalex Percentile: Top 7%
High-Temperature Coating Behaviors
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Fabricating corrosion-resistant FeAl coating used in liquid lead-bismuth eutectic by direct energy deposition — Shihao Zhang, Qian Zhang, et al. · Corrosion Science (2026) | TGRS Research Map | TGRS