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Silicon carbide composites as fusion power reactor structural materials

机译:碳化硅复合材料作为聚变动力堆的结构材料

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摘要

Silicon carbide was first proposed as a low activation fusion reactor material in the mid 1970s. However, serious development of this material did not begin until the early 1990s, driven by the emergence of composite materials that provided enhanced toughness and an implied ability to use these typically brittle materials in engineering application. In the decades that followed, SiC composite system was successfully transformed from a poorly performing curiosity into a radiation stable material of sufficient maturity to be considered for near term nuclear and non-nuclear systems. In this paper the recent progress in the understanding and of basic phenomenon related to the use of SiC and SiC composite in fusion applications will be presented. This work includes both fundamental radiation effects in SiC and engineering issues such as joining and general materials properties. Additionally, this paper will briefly discuss the technological gaps remaining for the practical application of this material system in fusion power devices such as DEMO and beyond.
机译:1970年代中期首次提出将碳化硅用作低活化聚变反应堆材料。但是,直到1990年代初,这种材料才开始进行认真的开发,这是由于复合材料的出现所带来的,该复合材料具有增强的韧性并具有在工程应用中使用这些典型的脆性材料的隐含能力。在随后的几十年中,SiC复合系统成功地从表现不佳的好奇心转变为具有足够成熟度的辐射稳定材料,可用于近期的核和非核系统。在本文中,将介绍与SiC和SiC复合材料在熔融应用中的使用有关的认识和基本现象的最新进展。这项工作既包括SiC中的基本辐射效应,也包括工程问题,例如接合和一般材料特性。此外,本文还将简要讨论该材料系统在诸如DEMO及其它以外的聚变功率器件中的实际应用所剩余的技术空白。

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