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Performance of Metal and Polymeric O-Ring Seals during Beyond-Design-Basis Thermal Conditions

机译:在超出设计基准的热条件下金属和聚合物O型圈密封件的性能

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摘要

This paper summarizes the small scale thermal exposure test results of the performance of metallic and polymeric O-ring seals typically used in radioactive material transportation packages. Five different O-ring materials were evaluated: Inconel/silver, ethylene-propylene diene monomer (EPDM), polytetrafluoroethylene (PTFE), silicone, butyl, and Viton. The overall objective of this study is to provide test data and insights to the performance of these Oring seals when exposed to beyond-design-basis temperature conditions due to a severe fire. Tests were conducted using a small-scale stainless steel pressure vessel pressurized with helium to 2 bar or 5 bar at room temperature. The vessel was then heated in an electric furnace to temperatures up to 900 °C for a pre-determined period (typically 8 h to 9 h). The pressure drop technique was used to determine if leakage occurred during thermal exposure. Out of a total of 46 tests performed, leakage (loss of vessel pressure) was detected in 13 tests.
机译:本文总结了放射性物质运输包装中通常使用的金属和聚合物O形密封圈性能的小规模热暴露测试结果。评估了五种不同的O形圈材料:铬镍铁合金/银,乙烯-丙烯二烯单体(EPDM),聚四氟乙烯(PTFE),硅树脂,丁基橡胶和氟橡胶。这项研究的总体目标是,在由于严重火灾而暴露于超出设计基准的温度条件下时,为这些Oring密封件的性能提供测试数据和见解。使用小型不锈钢压力容器在室温下将氦气加压至2 bar或5 bar进行测试。然后将容器在电炉中加热到最高900°C的温度持续预定时间(通常为8 h至9 h)。压降技术用于确定在热暴露期间是否发生泄漏。在进行的总共46项测试中,有13项检测到泄漏(容器压力损失)。

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