快速访问

查看PDF

文章信息

参考文献

[1]荣健, 刘展. 先进核能技术发展与展望 [J]. 原子能科学技术, 2020, 54(9): 1638-1643.
[2]梁娜, 姚存峰, 龙斌等. 铅冷快堆结构材料耐蚀涂层技术研究概述 [J]. 材料导报, 2022, 36(23): 97-103.
[3]ZHU Z G, ZHANG Q, TAN J B, et al. Corrosion behavior of T91 steel in liquid lead-bismuth eutectic at 550℃: Effects of exposure time and dissolved oxygen concentration [J]. Corrosion Science, 2022, 204: 110405.
[4]WANG H, XIAO J, CHAI L J, et al.Insights into the corrosion mechanism of a 12Cr F/M steel in oxygen-saturated liquid LBE [J]. Corrosion Science, 2023, 225: 111602.
[5]张代鑫, 冯海云, 胡宏伟, 等. 液态金属脆化机理研究现状 [J]. 材料导报, 2023, 37(z2): 320-328.
[6]李 骥, 何西扣, 许 斌,等. 铅铋堆用T91钢耐腐蚀性能及脆化现象研究进展 [J]. 金属功能材料, 2021, 28(4): 35-41.(in Chinese)
[7]孙 瑜, 刘 建, 王浩煜, 等. 高流速铅铋环境下板型燃料组件流致振动特性研究 [J]. 核动力工程, 2024, 45(3): 246-251.
[8]马韦刚, 邓平, 曹宇等. 316和T91钢在液态铅铋合金中的腐蚀行为研究 [J]. 科学技术创新, 2023(9): 49-53.
[9]陈嘉骏. 铅铋快堆候选材料FeCrAl合金的铅铋脆化失效行为研究 [D]. 深圳大学, 2022.
[10]卓洪, 钟志淮, 温涛等, Si合金化对10Cr铁/马钢在液态铅铋共晶环境中的液态金属脆化敏感性的影响 [J]. 核科学与工程, 2024, 44 (2): 314-321.
[11]CHARALAMPOPOULOU E., DELVILLER., VERWERFT M., et al. Transmission electron microscopy study of complex oxide scales on DIN 1.4970 steel exposed to liquid Pb-Bi eutectic [J]. Corrosion Science, 2019, 147: 22-31.
[12]HAO ShI, HUI WANG, RENATE FETZER, et al. Influence of Si addition on the corrosion behavior of 9wt% Cr ferritic/martensitic steels exposed to oxygen-controlled molten Pb-Bi eutectic at 550°C and 600°C [J]. Corrosion Science, 2021, 193: 0010-938X.
[13]TSISAR V., SCHROER C., WEDEMEYER O., et al. Long-term corrosion of austenitic steels in flowing LBE at 400°C and 10−7 mass% dissolved oxygen in comparison with 450 and 550°C [J]. Journal of Nuclear Materials, 2016, 468: 305-312.
[14]YAO C. F., WANG Z. G., ZHANG H. P., et al. HLMIF, a facility for investigating the synergistic effect of ion-irradiation and LBE corrosion [J]. Journal of Nuclear Materials, 2019, 523: 260.
[15]YAO C. F., ZHANG H. P., CHANG H. L., et al. Structure of surface oxides on martensitic steel under simultaneous ion irradiation and molten LBE corrosion [J]. Corrosion Science, 2022, 195: 109953
[16]ERSOY F., GAVRILOV S., VERBEKEN K. Investigating liquid-metal embrittlement of T91 steel by fracture toughness tests [J]. Journal of Nuclear Materials, 2016, 472: 171-177.
[17]PRORIOL SERRE I., PONSOT I., VOGT J. B. Alumina-Forming Austenitic (AFA) steels and aluminium-based coating on 15-15 Ti steel to limit mechanical damage in presence of liquid lead-bismuth eutectic and liquid lead [J]. MATEC Web of Conferences, 2021, 349: 02007.
[18]GORSE D., AUGER T., VOGT J. B., et al. Influence of liquid lead and lead–bismuth eutectic on tensile, fatigue and creep properties of ferritic/martensitic and austenitic steels for transmutation systems [J]. Journal of Nuclear Materials, 2011, 415(3): 284-292.
[19]何明宇, 康红军, 卢松涛,等. 铅铋共晶合金冷却剂应用面临挑战及解决方案 [J]. 稀有金属材料与工程, 2023, 52(10): 3661-3672.
[20]WANG H., YU H., KONDO S., et al. Corrosion behaviour of Al-added high Mn austenitic steels in molten lead bismuth eutectic with saturated and low oxygen concentrations at 450℃ [J]. Corrosion Science, 2020, 175: 108864.
[21]CHEN L., TSIAAR V., WANG M., et al. Effect of oxygen on corrosion of an alumina-forming duplex steel in static liquid lead-bismuth eutectic at 550°C [J]. Corrosion Science, 2021, 189: 109591.
[22]李美栓. 金属的高温腐蚀 [M]. 北京: 冶金工业出版社, 2001.11.

版权与开放获取声明

作为一本开放获取的学术期刊,所有文章均遵循 Creative Commons Attribution 4.0 International License (CC BY 4.0) 协议发布,允许用户在署名原作者的前提下自由共享与再利用内容。所有文章均可免费供读者和机构阅读、下载、引用与传播,EWA Publishing 不会通过期刊的出版发行向读者或机构收取任何费用。