Additive manufactured ODS-FeCrAl steel achieves high corrosion resistance in lead-bismuth eutectic (LBE)

被引:1
|
作者
Li, Ji-Sheng [1 ]
Wang, Yan-Fei [1 ]
Chai, Junjie [1 ]
Gong, Weijia [1 ]
Wang, Xian-Zong [1 ]
机构
[1] Northwestern Polytech Univ, Ctr Adv Lubricat & Seal Mat, State Key Lab Solidificat Proc, Xian 710072, Peoples R China
关键词
Additive manufacturing; Oxide dispersion-strengthened (ODS) FeCrAl; alloy; Lead-bismuth eutectic (LBE); Corrosion; Oxide layer; AUSTENITIC STAINLESS-STEELS; DISPERSION-STRENGTHENED STEELS; LIQUID LEAD; DISSOLUTION CORROSION; OXIDATION RESISTANCE; STAGE OXIDATION; CONTACT; ALLOY; AL;
D O I
10.1016/j.jnucmat.2024.155516
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Developing corrosion resistant alloys used in lead-bismuth eutectic (LBE) is essential for lead-cooled fast reactors (LFRs). In this work, additive manufacturing was applied to fabricate oxide dispersion-strengthened FeCrAl steels (ODS and Y-ODS), and the latter contains 1.5 wt.% Y2O3 nanoparticles. After exposure in LBE at 450 degrees C for 1000 hours, both alloys generate a compact, uniform and stable Cr2O3/Al2O3 protective oxide layer (below 200 nm). Benefits from the quick transient oxidation rate at the initial stage, the oxide layer realizes a slow oxidation kinetics and achieves high corrosion resistance to LBE attack. More importantly, the addition of Y2O3 induce the formation of Y-Al-O-type oxide nanoparticles which provides an additional source of Al3+ at the interface and promotes the growth of an internal oxide layer within Al2O3, and thus subsequently the oxides layer demonstrates remarkable stability. This study highlights the potential application of additive manufacturing in advanced materials for LFRs.
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页数:11
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