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Tritium decay helium-3 effects in tungsten

机译:钨中Tri的衰变氦3效应

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Tritium (T) implanted by plasmas diffuses into bulk material, especially rapidly at elevated temperatures, and becomes trapped in neutron radiation-induced defects in materials that act as trapping sites for the tritium. The trapped tritium atoms will decay to produce helium-3 ( 3 He) atoms at a half-life of 12.3 years. 3 He has a large cross section for absorbing thermal neutrons, which after absorbing a neutron produces hydrogen (H) and tritium ions with a combined kinetic energy of 0.76 MeV through the 3 He(n,H)T nuclear reaction. The purpose of this paper is to quantify the 3 He produced in tungsten by tritium decay compared to the neutron-induced helium-4 ( 4 He) produced in tungsten. This is important given the fact that helium in materials not only creates microstructural damage in the bulk of the material but alters surface morphology of the material effecting plasma-surface interaction process (e.g. material evolution, erosion and tritium behavior) of plasma-facing component materials. Effects of tritium decay 3 He in tungsten are investigated here with a simple model that predicts quantity of 3 He produced in a fusion DEMO FW based on a neutron energy spectrum found in literature. This study reveals that: (1) helium-3 concentration was equilibrated to ~6% of initial/trapped tritium concentration, (2) tritium concentration remained approximately constant (94% of initial tritium concentration), and (3) displacement damage from 3 He(n,H)T nuclear reaction became >1 dpa/year in DEMO FW.
机译:等离子体注入的扩散到块状材料中,尤其是在高温下迅速扩散,并被俘获在中子辐射诱发的材料缺陷中,这些缺陷是tri的俘获部位。被捕获的tri原子将衰变以产生氦3(3 He)原子,其半衰期为12.3年。 3 He具有大的吸收热中子的横截面,吸收中子后通过3 He(n,H)T核反应产生氢(H)和tri离子,其动能组合为0.76 MeV。本文的目的是量化与中子诱发的钨产生的氦4(4 He)相比,by衰变在钨中产生的3 He。考虑到以下事实,这一点很重要:材料中的氦气不仅会在材料主体中造成微结构破坏,而且会改变材料的表面形态,从而影响面向等离子体的成分材料的等离子-表面相互作用过程(例如,材料演化,腐蚀和tri行为) 。本文用一个简单的模型研究了t衰变3 He在钨中的作用,该模型基于文献中发现的中子能谱预测聚变DEF FW中产生的3 He量。该研究表明:(1)氦3的浓度平衡到初始/捕获tri浓度的6%左右;(2)concentration浓度保持近似恒定(初始initial浓度的94%),以及(3)3引起的位移破坏在DEMO FW中,He(n,H)T核反应每年> 1 dpa。

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