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Tungsten heavy alloy: an alternative plasma-facing material in terms of hydrogen isotope retention

机译:钨重合金:氢同位素保留方面的替代等离子体材料

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摘要

We performed a systematic study of the deuterium retention in the tungsten heavy alloy W-2Ni-lFe (HPM 1850 from HC Starck, Germany). Consisting of two different phases with generally two distinctly different heats of solution, such alloys represent a special class of materials with respect to hydrogen isotope transport and retention. Deuterium was implanted from a plasma with an energy of 38 eV D~(-1) at sample temperatures of 100 °C, 175 °C, and 250 °C in the fluence range 10~(23) D m~(-2) to 4 × 10~(25) D m~(-2). For each combination of implantation temperature and fluence, two alloy samples were exposed together with one sample of bulk hot-rolled tungsten (from Plansee SE). The amount of retained deuterium was determined by thermal desorption with heating up to 850 °C for the alloy and 1050 °C for the bulk tungsten. The outgassed deuterium was detected by mass spectroscopy at the mass channels 3, 4, 19, and 20 corresponding to HD, D_2, HDO, and D_2O, respectively. The near-surface deuterium concentration was determined by ~3He nuclear reaction analysis. The retention in the alloy as compared to the bulk tungsten decreases systematically with increasing implantation fluence for each of the investigated implantation temperatures. For the higher fluences the ratio decreases systematically also, as a function of implantation temperature. This means that especially for high implantation fluences and temperatures the alloy HPM 1850 systematically retains less hydrogen isotopes than bulk tungsten. This property represents an important qualification criterion as a plasma-facing material for a future fusion reactor.
机译:我们对钨重合金W-2NI-LFE(来自德国HC Starck的HPM 1850)进行了对氘保留的系统研究。由两种不同的阶段组成,通常两个明显不同的溶液热量,这种合金代表了一类特殊的材料,相对于氢同位素传输和保留。在流量范围内,在100℃,175℃和250℃的样品温度下,在100℃,175℃和250℃的样品中,从等离子体中植入氘。10〜(23)D m〜(2)到4×10〜(25)D m〜(-2)。对于植入温度和注量的每个组合,将两个合金样品与一个散装热轧钨样品一起暴露在一起(来自Plansee Se)。通过热解吸测定保留的氘的量,加热高达850℃的合金,1050℃用于散装钨。通过分别对应于HD,D_2,HDO和D_2O的质量通道3,4,19和20的质谱分别检测除氘的氘。近表面氘浓度通过〜3HE核反应分析测定。与散装钨相比,合金的保留随着所研究的植入温度的增加而系统地减少。对于较高的流量,该比率也系统地减少,作为植入温度的函数。这意味着特别适用于高植入量和温度,合金HPM 1850系统地保留较少的氢同位素,而不是散装钨。该属性代表了作为未来融合反应堆的面向等离子体材料的重要资格标准。

著录项

  • 来源
    《Nuclear fusion》 |2020年第12期|126044.1-126044.7|共7页
  • 作者单位

    Max-Planck-Institut fuer Plasmaphysik Boltzmannstrasse 2 Garching 85748 Germany;

    Max-Planck-Institut fuer Plasmaphysik Boltzmannstrasse 2 Garching 85748 Germany Technische Universitaet Muenchen Boltzmannstrasse 15 Garching 85748 Germany;

    Max-Planck-Institut fuer Plasmaphysik Boltzmannstrasse 2 Garching 85748 Germany;

    Max-Planck-Institut fuer Plasmaphysik Boltzmannstrasse 2 Garching 85748 Germany;

    Max-Planck-Institut fuer Plasmaphysik Boltzmannstrasse 2 Garching 85748 Germany;

    Max-Planck-Institut fuer Plasmaphysik Boltzmannstrasse 2 Garching 85748 Germany;

    Max-Planck-Institut fuer Plasmaphysik Boltzmannstrasse 2 Garching 85748 Germany;

  • 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

    tungsten heavy alloy; plasma-facing material; hydrogen retention; nuclear reaction analysis; thermal desorption;

    机译:钨重合金;面向等离子体材料;氢保留;核反应分析;热解吸;
  • 入库时间 2022-08-18 21:19:06

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