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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Hydrogen absorption capability of a niobium panel for pumping neutral atoms in divertor region
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Hydrogen absorption capability of a niobium panel for pumping neutral atoms in divertor region

机译:铌板吸收偏滤器中的中性原子的氢吸收能力

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摘要

The capability of a niobium panel to absorb atomic hydrogen was investigated for particle control application in divertors. The absorption rate (1.3 x 10(20) H/m(2) s) stayed almost constant up to a dose of 4 x 10(23) H/m(2) with no hydride formation occurring. The absorption panel can be easily regenerated. The absorbed hydrogen can be retained in the panel even after 48h at room temperature. The absorption rate was found to decrease with panel temperature for T < 200 degrees C, remarkably dropping in the vicinity of room temperature. This is connected most probably with the formation of a multilayer impurity coverage. The multilayer carbon coverage deposited during the panel exposure in the divertor region of LHD decreased the absorption rate, but the panel properties could be completely restored by heating at 850 degrees C in spite of panel carbidization. (c) 2004 Elsevier B.V. All rights reserved.
机译:研究了铌板吸收原子氢的能力,以用于偏滤器中的颗粒控制应用。吸收速率(1.3 x 10(20)H / m(2)s)几乎保持恒定,直到剂量达到4 x 10(23)H / m(2)且没有形成氢化物。吸收板可以容易地再生。即使在室温下放置48小时后,吸收的氢气也可以保留在面板中。发现对于T <200℃,吸收率随着板温度而降低,在室温附近显着下降。这很可能与多层杂质覆盖的形成有关。在面板暴露期间,在LHD的转向器区域中沉积的多层碳覆盖率降低了吸收速率,但是尽管面板发生碳化,但仍可通过在850摄氏度下加热来完全恢复面板特性。 (c)2004 Elsevier B.V.保留所有权利。

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