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Irradiation and testing of off-the-shelf seal materials for water hydraulic applications in ITER remote handling equipment

机译:ITER远程处理设备中用于水压应用的现成密封材料的辐照和测试

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Remote handling (RH) is one of the most challenging aspects of the ITER project, and the European home team is building a major prototype of the divertor region (the Divertor Test Platform 2) to confirm practically the RH concepts proposed in this area. To handle the 9 Tonne divertor cassette, water hydraulics has been selected because it offers high forces and precise control in a compact envelope, with minimal long-term contamination should a leak develop. Water hydraulic components use mainly stainless steel - unaffected by gamma radiation - but the integral seals and O-rings are known to be sensitive. For radiation testing of these components, a modular approach was adopted, enabling up to 11 seal carriers assemblies to be irradiated simultaneously in the limited space available, with individual carriers being removed at varying total doses up to 10 MGy. Each carrier was then installed in a real hydraulic rig for testing, revealing not only at what total dose the components became unusable, but also how they fail, enabling condition monitoring to assess the state of the seals long before their failure might render the RH equipment irrecoverable.
机译:远程处理(RH)是ITER项目最具挑战性的方面之一,欧洲家庭小组正在构建分流器区域的主要原型(Divertor测试平台2),以确认该领域中提出的RH概念。为了处理9吨的分流器盒,选择了水液压系统,因为它在紧凑的外壳内提供了强大的力量和精确的控制,并且在泄漏发生时将长期污染降至最低。水压元件主要使用不锈钢-不受伽马射线的影响-但众所周知,整体式密封件和O形圈很敏感。为了对这些组件进行辐射测试,采用了模块化方法,可以在有限的可用空间中同时照射多达11个密封支架组件,并以高达10 MGy的总剂量将单个支架移除。然后将每个搬运器安装在实际的液压设备中进行测试,不仅可以显示出无法使用的总剂量,还可以显示出它们如何失效,从而使状态监测能够在密封件失效可能使RH设备变得很早之前评估密封件的状态。无法挽回。

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