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APPROACHES TO DEVELOPMENT OF STEELS AND MANUFACTURING TECHNOLOGIES FOR FUSION REACTORS

机译:用于熔融反应器的钢和制造技术的开发方法

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The development of radiation resistant steels for fusion reactors would rely heavily on the rich experience gained in the commercialization of fast reactor core component materials, in the last three decades. The extrapolation of behaviour of materials from fission to fusion environments is not straight forward, owing to the wide differences in the service exposure conditions. However, the knowledge base developed in a wide spectrum of fields for the fast reactor technology so far will shorten the time span for development of newer materials. The paper discusses the evolution of various austenitic, ferritic, ferritic/martensitic and Oxide Dispersion Strengthened (ODS) steels through optimisation of chemical composition, fabrication processes and heat treatment to achieve required material properties for fast reactor applications. Recent results on characterization of Ti-modified austenitic stainless steels with electron microscopy and positron annihilation are discussed in the context of role of minor elements on void swelling and mechanical properties. Artificial neural network models, finite element simulation and phase evolution studies are discussed in the context of fabrication of fusion reactor components. The importance of complex Y-Ti-O nano clusters for enhanced creep strength at elevated temperatures in ODS alloys and the role of defects formed during mechanical alloying are discussed.
机译:用于聚变反应堆的耐辐射钢的开发将在很大程度上依赖于过去三十年中在快速反应堆堆芯组件材料的商业化中获得的丰富经验。由于工作暴露条件的巨大差异,从裂变到聚变环境的材料行为的外推并非直截了当的。但是,到目前为止,在快速反应器技术的广泛领域中开发的知识库将缩短开发新材料的时间。本文讨论了各种奥氏体,铁素体,铁素体/马氏体和氧化物弥散强化(ODS)钢的发展,它们通过优化化学成分,制造工艺和热处理来实现快速反应堆应用所需的材料性能。在微量元素对空隙溶胀和机械性能的作用的背景下,讨论了用电子显微镜和正电子hil灭表征Ti改性奥氏体不锈钢的最新结果。在聚变反应堆组件制造的背景下,讨论了人工神经网络模型,有限元模拟和相演化研究。讨论了复杂的Y-Ti-O纳米簇对于提高ODS合金在高温下的蠕变强度的重要性以及在机械合金化过程中形成的缺陷的作用。

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