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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Diagnostic mirrors for ITER: A material choice and the impact of erosion and deposition on their performance
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Diagnostic mirrors for ITER: A material choice and the impact of erosion and deposition on their performance

机译:ITER诊断镜:材料选择以及腐蚀和沉积对其性能的影响

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Metal mirrors will be implemented in about half of the ITER diagnostics. Mirrors in ITER will have to withstand radiation loads, erosion by charge-exchange neutrals, deposition of impurities, particle implantation and neutron irradiation. It is believed that the optical properties of diagnostic mirrors will be primarily influenced by erosion and deposition. A solution is needed for optimal performance of mirrors in ITER throughout the entire lifetime of the machine. A multi-machine research on diagnostic mirrors is currently underway in fusion facilities at several institutions and laboratories worldwide. Among others, dedicated investigations of ITER-candidate mirror materials are ongoing in Tore-Supra, TEXTOR, DIII-D, TCV, T-10 and JET. Laboratory studies are underway at IPP Kharkov (Ukraine), Kurchatov Institute (Russia) and the University of Basel (Switzerland). An overview of current research on diagnostic mirrors along with an outlook on future investigations is the subject of this paper. (c) 2007 Elsevier B.V. All rights reserved.
机译:金属镜将在约一半的ITER诊断中实施。 ITER中的反射镜将不得不承受辐射负荷,电荷交换中性物的腐蚀,杂质的沉积,粒子注入和中子辐照。相信诊断镜的光学特性将主要受到腐蚀和沉积的影响。需要一种解决方案,以在机器的整个生命周期中实现ITER中镜子的最佳性能。目前,全球数家机构和实验室的融合设施正在对诊断镜进行多机研究。除其他外,在托雷·苏普拉,TEXTOR,DIII-D,TCV,T-10和JET正在进行ITER候选镜面材料的专门研究。 IPP哈尔科夫(乌克兰),库尔恰托夫研究所(俄罗斯)和巴塞尔大学(瑞士)正在进行实验室研究。本文的主题是对诊断镜的最新研究以及对未来研究的展望。 (c)2007 Elsevier B.V.保留所有权利。

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