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Preliminary development of a conceptual first wall for DEMO

机译:演示概念第一墙的初步发展

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The first wall is one of the key components in a tokamak, in particular, for DEMO in the future. The conceptual first wall for a DEMO reactor is designed, fabricated and tested in this paper. It has a sandwich-like structure, which consists of a reduced activation ferritic/martensitic (RAFM) substrate, an interlayer and a plasma-facing material of tungsten produced by chemical vapor deposition (CVD-W) due to its characteristics of high density, high purity and superior thermal shock resistance. The interlayer is required to not only have good adhesion between CVD-W and the CLF-1 substrate, which is a type of RAFM developed by the Southwestern Institute of Physics, but also the capability of tritium transport prevention due to the great importance of controlling the tritium buildup in the first wall, improving the fuel efficiency and conforming to the safety regulations of tritium. Titanium nitride (TiN), a well-known tritium barrier, is selected as the interlayer material in this work. In total, eight sandwich-like first wall samples have been fabricated, and thermal cycle tests and plasma exposure tests are implemented. The results of material analysis show that the quality of the TiN coating layer is critical for good adhesion and tritium prevention. At the defects of the TiN interlayer, fluorine (F) penetrated into the CLF-1 during the CVD-W fabrication and, as a result, the sandwich-like structure was broken near the CLF-1 side. For some samples, the TiN interlayer made by CVD has sufficient adhesion as an interlayer between CVD-W and CLF-1 during tests so far. These encouraging test results support further examination of TiN as an interlayer material for W on an RAFM steel as a first wall material. Preliminary results indicate that the design and fabrication of the conceptual first wall are feasible. Further tests, including the improvement of the interlayer quality and the tritium permeation test, are necessary in the future.
机译:第一墙是Tokamak中的关键组件之一,特别是在未来的演示。在本文中设计,制造和测试了演示反应器的概念第一墙。它具有夹心状结构,其由通过其高密度的特性而产生的由化学气相沉积(CVD-W)产生的减少的激活铁素体/马氏体(RAFM)衬底,中间层和面对钨的等离子体材料。高纯度和卓越的热抗冲击性。中间层是不仅在CVD-W和CLF-1基板之间具有良好的粘附性,这是由西南物理学研究所开发的一种RAFM,​​而且由于控制的重要性,预防氚运输的能力第一墙中的氚堆积,提高燃油效率,符合氚的安全规定。选择众所周知的氚屏障氮化钛(锡)作为该工作中的中间层材料。总共制造了八个夹层的第一壁样品,并实现了热循环测试和等离子体曝光测试。材料分析结果表明,锡涂层的质量对于良好的粘附性和氚预防至关重要。在锡中间层的缺陷处,在CVD-W期间穿透到CLF-1中的氟(F),结果,在CLF-1侧附近破裂夹层状结构。对于一些样品,通过CVD制造的锡夹层在到目前为止测试期间CVD-W和CLF-1之间的中间层具有足够的粘附性。这些令人鼓舞的测试结果支持进一步检查作为第一壁材料的RAFM钢上W的层间材料。初步结果表明概念第一墙的设计和制造是可行的。在未来需要进一步测试,包括改善层间质量和氚渗透测试,是必要的。

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  • 来源
    《Nuclear fusion》 |2020年第9期|096015.1-096015.11|共11页
  • 作者单位

    Southwestern Institute of Physics Chengdu Sichuan China;

    Southwestern Institute of Physics Chengdu Sichuan China;

    School of Microelectronics Xi'an Jiaotong University China;

    Southwestern Institute of Physics Chengdu Sichuan China;

    Xiamen Tungsten Company Xiamen Fujian China;

    Xiamen Tungsten Company Xiamen Fujian China;

    Southwestern Institute of Physics Chengdu Sichuan China;

    Southwestern Institute of Physics Chengdu Sichuan China;

    DIFFER-Dutch Institute for Fundamental Energy Research De Zaale 20 5612 AJ Eindhoven Netherlands;

    Southwestern Institute of Physics Chengdu Sichuan China;

    DIFFER-Dutch Institute for Fundamental Energy Research De Zaale 20 5612 AJ Eindhoven Netherlands;

    Southwestern Institute of Physics Chengdu Sichuan China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    first wall; DEMO; interlayer; tritium barrier; TiN; CVD-W; CLF-1;

    机译:第一墙;演示;中间人;氚障;锡;CVD-W;CLF-1;

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