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Investigation of materials for fusion power reactors

机译:融合电抗器材料的研究

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The possibility of application of nuclear-physical methods to observe radiation damage to structural materials of nuclear facilities is nowadays a very actual topic. The radiation damage to materials of advanced nuclear facilities, caused by extreme radiation stress, is a process, which significantly limits their operational life as well as their safety. In the centre of our interest is the study of the radiation degradation and activation of the metals and alloys for the new nuclear facilities (Generation IV fission reactors, fusion reactors ITER and DEMO). The observation of the microstructure changes in the reactor steels is based on experimental investigation using the method of positron annihilation spectroscopy (PAS). The experimental part of the work contains measurements focused on model reactor alloys and ODS steels. There were 12 model reactor steels and 3 ODS steels. We were investigating the influence of chemical composition on the production of defects in crystal lattice. With application of the LT 9 program, the spectra of specimen have been evaluated and the most convenient samples have been determined.
机译:核物理方法申请禁止核设施结构材料的辐射损伤的可能性是一个非常实际的主题。由极端辐射应力引起的先进核设施材料的辐射损坏是一个过程,这显着限制了其运营生活以及其安全性。在我们的兴趣中,研究了新核设施的辐射降解和活化的辐射降解和活化(发电IV裂变反应器,融合反应器ITER和演示)。对反应器钢的微观结构变化的观察基于使用正电子湮没光谱(PAS)的实验研究。该工作的实验部分含有重点在模型反应器合金和ODS钢上的测量。有12个模型反应器钢和3个ODS钢。我们正在研究化学成分对晶格缺陷生产的影响。通过应用LT 9程序,已经评估了样本的光谱,并确定了最方便的样本。

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