Nano-Channels Early Formation Investigation on Stainless Steel 316Ti after Immersion in Molten Pb-Bi

A. K. Rivai, M. Panitra, A. Heinzel
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Abstract

Development of fuel cladding and structural materials in Pb-Bi environment, especially at high temperature, is a critical issue for the deployment of LFR (Lead alloy-cooled Fast Reactor) and ADS (Accelerator Driven Transmutation System). This is because of the corrosive characteristic of Pb-Bi to metals as constituent materials of fuel cladding and structural of the reactors. Corrosion test of a high-chromium austenitic stainless steel i.e. SS316Ti in molten Pb-Bi at 550 oC has been carried out for about 300 hours continuously. The characterization using SEM-EDS (Scanning Electron Microscopy - Energy Dispersive X-ray Spectroscopy) showed that an iron oxide as the outer layer and a chromium oxide as the inner layer on the surface of the specimen were formed which in general have protected the steel specimen from corrosion and dissolution attack of Pb-Bi. However, small amount of Pb could penetrate into the iron oxide layer through ultra-narrow channels. Atomic Force Microscopy (AFM) with Electrostatic Force Microscopy (EFM) mode was employed to investigate the phenomena of the nano-channels early formation. The results of the nano-scale investigation showed clearly the formation of the channels at the early time of corrosion as the way of Pb to penetrate into iron oxide outer layer.
不锈钢316Ti浸在Pb-Bi熔液中早期形成纳米通道的研究
铅铋环境下,特别是高温环境下燃料包壳和结构材料的研制是铅合金冷却快堆和加速器驱动嬗变系统(ADS)发展的关键问题。这是因为铅铋对作为燃料包壳和反应堆结构组成材料的金属具有腐蚀性。对高铬奥氏体不锈钢SS316Ti在550℃熔融Pb-Bi中进行了连续300小时的腐蚀试验。SEM-EDS(扫描电子显微镜-能量色散x射线光谱)表征表明,在试样表面形成了一层氧化铁作为外层,一层氧化铬作为内层,总体上保护了钢试样免受Pb-Bi的腐蚀和溶解攻击。然而,少量的Pb可以通过超窄通道渗透到氧化铁层中。采用原子力显微镜(AFM)和静电力显微镜(EFM)模式研究了纳米通道的早期形成现象。纳米尺度的研究结果清楚地表明,铅在腐蚀初期形成的通道是铅渗透到氧化铁外层的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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