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NUMERICAL MODELLING OF COMPRESSION STRESS RELAXATION AND COMPRESSION SET OF ELASTOMER O-RING DURING AGING

机译:老化期间弹性体O形圈压缩应力松弛和压缩集的数值模拟

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Elastomer seals are used in many industrial applications due to their excellent mechanical properties at a wide range of temperatures. Their high versatility and recovery potential under several load conditions make them well suitable for the application in containers designed for transport, storage and/or disposal of radioactive materials. In containers for low and intermediate level radioactive waste, elastomer seals are used as barrier seals, and as auxiliary seals in storage and transportation casks (dual purpose casks) for heat generating radioactive waste, such as spent fuel and high-level waste. While a seal exchange at defined intervals is typical in many conventional applications, it is impossible or at least hard to perform when principles of minimization of radiation exposure have to be considered and prohibit an unnecessary cask handling. An extensive knowledge of the change of the elastomer's properties during aging and the availability of reliable end-of-lifetime criteria to guarantee the permanent safe enclosure of the radioactive material is mandatory. As BAM is involved in most of the national cask licensing procedures and in the evaluation of cask-related long-term safety issues, great efforts have been already made and are still planned to scientifically support this task. Compression stress relaxation and compression set were identified as key indicators of elastomer long-term performance and quantitatively investigated in comprehensive test programs. Among other representative types of elastomers, specimens made from ethylene propylene diene rubber (EPDM) were tested before, during and after aging to capture the most important of their complex mechanical properties. In the presented study, exemplary results were used to simulate the compression stress relaxation and the compression set of elastomer O-rings during aging. Regarding the influence of temperature, the time-temperature superposition principle is applied in the relaxation analysis of elastomer O-rings. The proposed model is implemented in the commercial finite element software ABAQUS/Standard® [1] with a sequential temperature displacement coupling. Numerical results match the experimental compression stress relaxation measurements well. The prediction of compression set values after long-term aging shows a relatively good agreement with the experimental results. Nevertheless, all input parameters derived from the specimen tests, additional assumptions concerning boundary conditions and modeling strategy are discussed with regard to the identified slight discrepancies. The possibility to extend the finite element model to represent the O-ring seal's ability to recover after a (fast) partial release is taken into account.
机译:由于它们在各种温度范围内的优异机械性能,弹性体密封件用于许多工业应用中。在几个负载条件下,它们的高通用性和恢复潜力使其适用于设计用于放射性物质的运输,存储和/或处理的容器中的应用。在用于低和中级放射性废物的容器中,弹性体密封件用作屏障密封件,并且作为储存和运输桶(双目的桶)的辅助密封,用于发热放射性废物,例如废燃料和高水平的废物。虽然在许多传统应用中,定义间隔以定义间隔的密封交换,但是当必须考虑辐射曝光的最小化原理时,不可能或至少难以执行,并且禁止不必要的桶处理。强制性地,对衰老过程中的弹性体特性的变化以及可靠的终身标准的可用性来广泛了解,以保证放射性物质永久安全外壳是强制性的。由于BAM参与了大多数国家桶许可程序和在与桶相关的长期安全问题的评估中,已经制定了巨大的努力,并且仍计划科学支持这项任务。压缩应力松弛和压缩集被鉴定为弹性体长期性能的关键指标,并在综合测试程序中定量研究。在其他代表性类型的弹性体中,在老化之前,期间和之后通过乙烯丙烯二烯橡胶(EPDM)制成的标本,以捕获其复杂的机械性能最重要的。在本研究中,在老化期间使用示例性结果来模拟压缩应力松弛和弹性体O形环的压缩集。关于温度的影响,在弹性体O形环的弛豫分析中应用时温叠加原理。所提出的模型是在商业有限元软件ABAQUS /Standard®[1]中实现,具有连续温度位移耦合。数值结果与实验压缩应力松弛测量相匹配。长期老化后的压缩设定值的预测显示了与实验结果相对较好的一致性。然而,关于所识别的轻微差异,讨论了来自样本测试的所有输入参数,关于边界条件和建模策略的额外假设。扩展有限元模型的可能性来表示O形圈密封件在考虑(快速)部分释放后恢复的能力。

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