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Corrosion Behavior and Surface Treatment of Cladding Materials Used in High-Temperature Lead-Bismuth Eutectic Alloy: A Review

机译:高温铅 - 铋共晶合金中使用的包层材料的腐蚀行为和表面处理:综述

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摘要

Liquid metal fast reactors were considered to be the most promising solution to meet the enormous energy demand in the future. However, corrosion phenomenon caused by the liquid metal, especially in high-temperature lead-bismuth coolant, has greatly hindered the commercialization of the advanced Generation-IV nuclear system. This review discussed current research on the corrosion resistance of structural materials (such as EP823, T91, ODS, and authentic steels) in high-temperature liquid metal served as reactor coolants. The current corrosion resistance evaluation has proved that even for the excellent performance of EP823, the structural material selected in pressurized water reactor is not the ideal material for operation in the high-temperature lead-bismuth eutectic (LBE). Furthermore, the latest coating technologies that are expected to be applied to cladding materials for coolant system were extensively discussed, including Al-containing coatings, ceramic coatings, oxide coatings, amorphous coatings and high-entropy alloy coatings. The detailed comparison summarized the corrosion morphology and corrosion products of various coatings in LBE. This review not only provided a systematic understanding of the corrosion phenomena, but also demonstrated that coating technology is an effective method to solve the corrosion issues of the advanced next-generation reactors.
机译:液态金属快速反应器被认为是最有希望的解决方案,以满足未来巨大的能源需求。然而,由液态金属引起的腐蚀现象,特别是在高温铅 - 铋冷却剂中引起的,极大地阻碍了先进的第一代-IV核系统的商业化。本综述讨论了在高温液态金属中的结构材料(如EP823,T91,ODS和正宗钢)的电流研究用作反应器冷却剂。目前耐腐蚀性评估证明,即使对于EP823的优异性能,在加压水反应器中选择的结构材料也不是高温铅 - 铋共晶(LBE)中的理想材料。此外,预计将应用于冷却剂系统的包层材料的最新涂层技术被广泛地讨论,包括含Al涂层,陶瓷涂层,氧化物涂层,非晶涂层和高熵合金涂层。详细的比较总结了LBE中各种涂料的腐蚀形态和腐蚀产物。本综述不仅提供了对腐蚀现象的系统理解,而且还证明了涂层技术是解决高级下一代反应堆的腐蚀问题的有效方法。

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