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Functional materials for ITER diagnostic systems - Radiation aspects

机译:ITER诊断系统的功能材料-辐射方面

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AbstractITER will be the first fusion device able to maintain fusion for long periods of time and therefore suitable to test integrated technologies, materials, and physics regimes necessary for the commercial production of fusion-based electricity. Therefore, ITER provides a harsh radiation environment that represents an important challenge for diagnostic systems located in various regions inside the tokamak, in particular the first wall, divertor areas, and ports, but as well ex-vessel areas, where radiation levels are also significantly high for some electronic components. The radiation induced effects in functional materials have been identified and studied in the past in the fusion and fission community. These effects comprise nuclear heating, changes in physical and mechanical properties due to transmutation and displacement damage, radiation induced conductivity (RIC) or radiation induced electrical degradation (RIED) effects on insulators, radiation induced absorption (RIA) for optical materials, radio luminescence observed in fibers and windows, etc. This paper summarizes the current status of the functional material selection for ITER diagnostic systems and the expected radiation conditions in the areas where they are located.Additional testing will be required for some materials and assemblies, such as bolometers and magnetic coils. Special attention is paid to the tests required for qualification of safety important components, such as diagnostic window assemblies and vacuum feedthroughs.Finally, as one of the best ways to reduce the impact of radiation in materials is to develop a proper shielding strategy, some of the shielding options envisaged for ITER are presented and discussed in this paper.
机译: 摘要 ITER将是第一个能够长时间保持融合的融合设备,因此适用于测试商业化生产核聚变所需的集成技术,材料和物理机制聚变电力。因此,ITER提供了苛刻的辐射环境,这对位于托卡马克内部各个区域的诊断系统构成了重大挑战,特别是第一壁,分流器区域和港口,以及前船上区域,那里的辐射水平也非常重要对于某些电子元件来说很高。过去,在聚变裂变界已经发现并研究了功能材料中的辐射诱发效应。这些影响包括核加热,由于trans变和位移损坏而引起的物理和机械性能变化,对绝缘子的辐射诱导电导率(RIC)或辐射诱导电降解(RIED)效应,光学材料的辐射诱导吸收(RIA),观察到的无线电发光本文概述了用于ITER诊断系统的功能材料选择的当前状态以及它们位于其区域内的预期辐射条件。 某些材料和组件(例如辐射热计和电磁线圈)将需要进行其他测试。要特别注意对安全重要部件进行鉴定所需的测试,例如诊断窗组件和真空穿通管。 最后作为减少材料中辐射影响的最佳方法之一是制定适当的屏蔽策略,本文介绍并讨论了为ITER设计的一些屏蔽选项。

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