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Secondary radiation damage and gas production in plasma facing materials under fusion neutron irradiation

机译:聚变中子辐照下面向等离子体的材料的二次辐射损伤和产气

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摘要

Primary radiation damage (atomic displacements) and Helium and Hydrogen production rates in plasma facing components (PFCs) of a fusion system are usually determined by the high energy part of neutron spectra formed in its plasma chamber from the initial fusion neutron source. The energetic alphas and protons, appearing in PFC materials in the (n,alpha) and (n,p) threshold reactions, per se may cause an additional, secondary material damage. In most cases this additional damage is non -essentially small. Ex altera parte an extra Helium production may become apparent in water cooled systems especially. Material inventory considerations show that Os, Ni and Zn as transmutation products generated in W, Cu -alloys and steels under long term neutron irradiation account for the secondary sources of intensive Helium production in (n,a) reactions with these transmutants. These even if preliminary evaluated responses should be taken into account in new material developments for long term fusion concepts. (C) 2017 Elsevier B.V. All rights reserved.
机译:聚变系统的等离子体面对部件(PFC)中的主要辐射损伤(原子位移)以及氦气和氢的产生速率通常由初始聚变中子源在其等离子体室中形成的中子谱的高能部分确定。出现在(n,alpha)和(n,p)阈值反应中的PFC材料中的高能α和质子本身可能会造成额外的次级物质损坏。在大多数情况下,这种额外的损害不是很小。特别是在水冷系统中,多余的氦气可能会变得明显。物料清单方面的考虑表明,在长期中子辐照下,W,Cu合金和钢中生成的O变产物Os,Ni和Zn构成了与这些trans变子(n,a)反应中大量产生氦气的次要来源。即使在长期融合概念的新材料开发中也应考虑这些初步评估的响应。 (C)2017 Elsevier B.V.保留所有权利。

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