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Corrosion Behavior of Fe13Cr5Al4Mo Alloy in Lithiated Water at 360 ℃、18.6 MPa
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The Key Laboratory for Advance Micro-Analysis,Shanghai University

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TL341; TG146.4+14

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    Abstract:

    The corrosion behavior of Fe13Cr5Al4Mo alloy in 70 μL/L LiOH aqueous solution at 360 °C,18.6 MPa was studied using a static autoclave to assess its corrosion resistance. The microstructure of the oxide film on the Fe13Cr5Al4Mo alloy after corrosion was investigated by SEM, TEM and EDS. The results show that the Fe13Cr5Al4Mo alloy exhibits corrosion weight loss in lithiated water, which is related to the dissolution-redeposition process of Fe oxide affected by LiOH. The oxide film formed on the alloy during the long-term corrosion in lithiated water is mainly composed of Fe(Cr,Al)2O4, and a small amount of Fe3O4 present near the outer surface. The Fe(Cr,Al)2O4 layer can hinder the diffusion of metal ions and oxygen ions within the oxide film, which in turn retards further corrosion of the alloy.

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[Ma HaiBin, Wang Haoyu, Zhang Wenhuai, Lin Xiaodong, Xue Jiaxiang, Ren QIsen, Liao Yehong, Hu Lijuan, Sun Rongrong, Liang Xue, Li Yifeng, YAO Meiyi. Corrosion Behavior of Fe13Cr5Al4Mo Alloy in Lithiated Water at 360 ℃、18.6 MPa[J]. Rare Metal Materials and Engineering,2024,53(7):2018~2024.]
DOI:10.12442/j. issn.1002-185X.20230289

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History
  • Received:May 15,2023
  • Revised:July 06,2023
  • Adopted:July 28,2023
  • Online: July 22,2024
  • Published: July 12,2024