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450°C下ODS FeCrAl合金在氧饱和铅铋共晶中的界面微观结构与腐蚀行为

Interfacial microstructure and corrosion behavior of ODS FeCrAl alloy in oxygen-saturated lead-bismuth eutectic at 450 °C.

作者信息

Luo Yang, Ma Shengqiang, Lv Ping, Liu Yusheng, Wang Xiaoting, Lv Liangliang, Xing Jiandong

机构信息

State Key Laboratory for Mechanical Behavior of Materials, School of Materials Science and Engineering, Xi'an Jiaotong University, Xi'an, 710049, Shaanxi Province, China.

School of Materials Science and Engineering, Xi'an Jiaotong University, 28 Xianning West Road, Xi'an, 710049, Shaanxi Province, PRC, China.

出版信息

Sci Rep. 2024 Oct 30;14(1):26175. doi: 10.1038/s41598-024-77786-9.

Abstract

The interfacial microstructure and corrosion behavior of oxide dispersion strengthening (ODS) FeCrAl alloy with 20 wt% Cr (e.g. 20Cr ODS FeCrAl alloy) exposed to static oxygen-saturated lead-bismuth eutectic (LBE) at 450 °C for 20 h, 40 h, 60 h, 80 h and 100 h as exposure time respectively have been investigated. The results show that multilayer corrosion films of 20Cr ODS FeCrAl alloy can exist at the corrosion interface. Due to formation of protective scales, the primary corrosion mechanism of 20Cr ODS FeCrAl alloy in LBE is oxidation rather than dissolution and penetration of liquid LBE. Specially, the spinel-shaped nano-sized dense external layer without any microcracks is obviously observed. Moreover, the dense and compact scale with micron-meters, i.e. Al-rich Fe-Cr spinel, generates at interface as the middle layer to effectively defend inward diffusion of oxygen and penetration of LBE. Meanwhile, a reinforced and continuous internal layer mixed with CrO scale and the ferrite inner oxidation zone (IOZ) existing in the form of the interlocking interface between the layers and the substrate can further promote the adhesion between corrosion layers and the substrate of 20Cr ODS FeCrAl.

摘要

研究了含20 wt% Cr的氧化物弥散强化(ODS)FeCrAl合金(如20Cr ODS FeCrAl合金)在450℃下分别暴露于静态氧饱和铅铋共晶(LBE)中20小时、40小时、60小时、80小时和100小时后的界面微观结构和腐蚀行为。结果表明,20Cr ODS FeCrAl合金的腐蚀界面处可存在多层腐蚀膜。由于形成了保护性氧化皮,20Cr ODS FeCrAl合金在LBE中的主要腐蚀机制是氧化,而非液态LBE的溶解和渗透。特别地,明显观察到了无任何微裂纹的尖晶石状纳米致密外层。此外,在界面处生成了微米级的致密且紧凑的氧化皮,即富铝的Fe-Cr尖晶石,作为中间层有效地抵御氧气向内扩散和LBE的渗透。同时,由CrO氧化皮和以层与基体之间的互锁界面形式存在的铁素体内部氧化区(IOZ)混合而成的强化且连续的内层,可进一步促进20Cr ODS FeCrAl腐蚀层与基体之间的附着力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf43/11525679/e78ad70f46d4/41598_2024_77786_Fig1_HTML.jpg

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