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Water hydraulic polymer components under irradiation Mechanical properties

机译:辐照下的水硬性聚合物组分机械性能

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Polymers will be used as different sealing and glide components in the hydraulic remote handling systems for lifting and moving activities in ITER. The degradation of the polymer materials does not depend only on the radiation dose but also on the irradiation environment, and for remote handling hydraulic applications the components have to work in high humidity or water. In this paper, three different polymers have been tested as possible seals and O-rings: PEEK, polyethylene (UHMWPE) and polyurethane. Specimens of each material have been irradiated with ~(60)Co γ-rays up to 10MGy in water and in dry nitrogen. Following irradiation mechanical testing (tensile and microhardness) and microstructural observations of the fracture mode were carried out. The results show that PEEK is outstanding, showing excellent mechanical behaviour for the doses and irradiation conditions studied. Up to 10 MGy, neither hardness nor tensile strength were modified. In the case of polyethylene and polyurethane, the tensile failure mechanism was modified with irradiation and gave rise to a lower ability for bending. However, up to 10 MGy the measured tensile strength and hardness data are still acceptable. The experimental results obtained from the irradiations in water and in dry nitrogen are very similar, indicating in this case that the water environment has little effect.
机译:聚合物将在液压远程处理系统中用作不同的密封和滑动组件,以在ITER中进行举升和移动活动。聚合物材料的降解不仅取决于辐射剂量,还取决于辐射环境,并且对于远程操作液压应用,组件必须在高湿度或水中工作。在本文中,已经测试了三种不同的聚合物作为可能的密封件和O形圈:PEEK,聚乙烯(UHMWPE)和聚氨酯。在水中和干燥的氮气中,每种材料的样品都用〜(60)Coγ射线辐照,最高可达10MGy。辐照后,进行了机械测试(拉伸强度和显微硬度)以及断裂模式的显微结构观察。结果表明,PEEK非常出色,在所研究的剂量和辐照条件下显示出优异的机械性能。高达10 MGy,硬度和拉伸强度均未改变。在聚乙烯和聚氨酯的情况下,拉伸破坏机理通过辐照而改变​​并且导致较低的弯曲能力。但是,高达10 MGy的测得拉伸强度和硬度数据仍然可以接受。从水中和干燥氮气中辐照获得的实验结果非常相似,表明在这种情况下水环境几乎没有影响。

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