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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Corrosion behaviors of US steels in flowing lead-bismuth eutectic (LBE)
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Corrosion behaviors of US steels in flowing lead-bismuth eutectic (LBE)

机译:美国钢铁在流动的铅铋共晶(LBE)中的腐蚀行为

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Corrosion tests of several US martensitic and austenitic steels were performed in a forced circulation lead-bismuth eutectic non-isothermal loop at the Institute of Physics and Power Engineering (IPPE), Russia. Tube and rod specimens of austenitic steels 316/316L, D-9, and martensitic steels HT-9, T-410 were inserted in the loop. Experiments were carried out simultaneously at 460degreesC and 550degreesC for 1000, 2000 and 3000h. The flow velocity at the test sections was 1.9m/s and the oxygen concentration in LBE was in the range of 0.03-0.05wppm. The results showed that at 460degreesC, all the test steels have satisfactory corrosion resistance: a thin protective oxide layer formed on the steel surfaces and no observable dissolution of steel components occurred. At 550degreesC, rod specimens suffered rather severe local liquid metal corrosion and slot corrosion; while tube specimens were subject to oxidation and formed double-layer oxide films that can be roughly described as a porous Fe3O4 outer layer over a chrome-rich spinel inner layer. Neglecting the mass transfer corrosion effects by the flowing LBE, calculations based on Wagner's theory reproduce the experimental results on the oxide thickness, indicating that the oxide growth mechanism of steels in LBE is similar to that of steels in air/steam, with slight modification by dissolution and oxide dissociation at the liquid metal interface. (C) 2004 Elsevier B.V. All rights reserved.
机译:在俄罗斯物理与动力工程研究所(IPPE)的强制循环铅-铋共晶非等温回路中进行了几种美国马氏体和奥氏体钢的腐蚀测试。将奥氏体钢316 / 316L,D-9和马氏体钢HT-9,T-410的管和棒试样插入环中。在460℃和550℃下同时进行1000、2000和3000h的实验。测试部分的流速为1.9m / s,LBE中的氧气浓度为0.03-0.05wppm。结果表明,在460℃下,所有测试钢都具有令人满意的耐腐蚀性:在钢表面形成了一层薄的保护性氧化层,并且未观察到钢成分的溶解。在550℃下,棒状试样遭受了相当严重的局部液态金属腐蚀和缝隙腐蚀。试管样品经过氧化处理后形成双层氧化膜,可以粗略地描述为富铬尖晶石内层上的多孔Fe3O4外层。忽略了流动的LBE的传质腐蚀效应,基于Wagner理论的计算重现了氧化物厚度的实验结果,表明LBE中钢的氧化物生长机理与空气/蒸汽中钢的氧化物生长机理相似,但略有修改。液态金属界面处的溶解和氧化物离解。 (C)2004 Elsevier B.V.保留所有权利。

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