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首页> 外文期刊>JOM Journal of the Minerals, Metals and Materials Society >Ferritic steels for sodium-cooled fast reactors: Design principles and challenges
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Ferritic steels for sodium-cooled fast reactors: Design principles and challenges

机译:钠冷快堆用铁素体钢:设计原则和挑战

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摘要

An overview of the current status of development of ferritic steels for emerging fast reactor technologies is presented in this paper. The creep-resistant 9–12Cr ferritic/martensitic steels are classically known for steam generator applications. The excellent void swelling resistance of ferritic steels enabled the identification of their potential for core component applications of fast reactors. Since then, an extensive knowledge base has been generated by identifying the empirical correlations between chemistry of the steels, heat treatment, structure, and properties, in addition to their in-reactor behavior. A few concerns have also been identified which pertain to high-temperature irradiation creep, embrittlement, Type IV cracking in creep-loaded weldments, and hard zone formation in dissimilar joints. The origin of these problems and the methodologies to overcome the limitations are highlighted. Finally, the suitability of the ferritic steels is re-evaluated in the emerging scenario of the fast reactor technology, with a target of achieving better breeding ratio and improved thermal efficiency.
机译:本文概述了用于新兴快堆技术的铁素体钢的发展现状。耐蠕变9-12Cr铁素体/马氏体钢在蒸汽发生器应用中是众所周知的。铁素体钢出色的抗空膨胀性使其能够确定其在快堆核心应用中的潜力。从那时起,通过确定钢的化学性质,热处理,结构和性能以及反应器内行为之间的经验相关性,已经建立了广泛的知识库。还发现了一些与高温辐射蠕变,脆化,蠕变加载焊件中的IV型开裂以及异种接头中的硬区形成有关的问题。这些问题的根源和克服这些局限性的方法被重点介绍。最后,在快速反应堆技术的新兴场景中,对铁素体钢的适用性进行了重新评估,目标是实现更好的育种率和提高的热效率。

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