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On the status and prospects for nanostructured ferritic alloys for nuclear fission and fusion application with emphasis on the underlying science

机译:论核裂变的纳米结构铁素体合金的现状与展望及融合应用强调潜在科学

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摘要

The status of nanostructured ferritic alloys (NFAs) is summarized. The science underlying NFAs has emerged as a remarkably comprehensive and high quality body of research. The sequence of events and composition-processing paths needed to form and sustain the performance enabling nano-oxides are well established. The nano-oxides are predominantly Y2Ti2O7 pyrochlore, and their role in providing outstanding mechanical properties and unique irradiation tolerance is described. Notably, however, producing defect-free NFA components remains a work in progress. The paper argues that the costs and supply of NFAs will be consistent with its selective application to advanced fission and fusion reactors. (C) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:总结了纳米结构铁素体合金(NFAS)的状态。 NFAS的科学是一种非常全面和高质量的研究。 确定和维持能够实现纳米氧化物的性能所需的事件和组合处理路径序列是很好的。 纳米氧化物主要是Y2Ti2O7辉纤维,描述了它们在提供优异的机械性能和独特照射耐受耐受的作用。 然而,特别是,产生无缺陷的NFA组件仍然是正在进行的工作。 本文认为,NFA的成本和供应将与其在先进裂变和融合反应器中的选择性应用一致。 (c)2017 Acta Materialia Inc. elsevier有限公司出版。保留所有权利。

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