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Investigation of seal effects according to axial compression variation of metal seals for transport and storage casks

机译:根据运输和储存桶的金属密封件的轴向压缩变化研究密封效果

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摘要

Casks for the transport and storage of heat generating radioactive waste in Germany are normally provided with screwed lid systems, which are in most cases equipped with double jacket metal seals with an inner spring wire to provide long term resistance to the seal compression force. Preservation of the high sealing quality of those seals under operational and accidental stress conditions is essentially important to the safety of those casks. Relative displacements of the lid system surfaces caused by specific impact scenarios cannot be excluded and have to be evaluated with respect to a possible increase in the leakage rate.nnTo get representative data for such metal sealed lid systems, BAM has developed a special conceptualised flange system placed in an appropriate testing machine for relevant mechanical loading of the metal seals under static and cyclic conditions. Furthermore, the flange system enables continuous measurement of the standard helium leakage rate during each test.nnThe primary aim of the investigation is to identify the correlation between variation of installation conditions (axial displacements) caused by external loads and the standard helium leakage rate. An essential parameter in this case is the useable resilience ru of a metal seal under relevant stress conditions. The useable resilience ru is the vertical difference in the cross-section between the seal's assembling status and the point where the leakage rate, by means of external load relieving, exceeds the quality criterion of 10-8 Pa m3 s-1. Load relieving can instantly occur due to modification of the seal groove dimension caused by accident impacts and deformation of the lid system. Furthermore, component specific basis data for the development of finite element calculation models should be collected. In the tests, seals are subjected to static and cyclic loads. All tests are performed at ambient temperature.nnThis paper presents the test configuration, different test series and results of the current experiments. Typical load-displacement-leakage rate correlations are presented and discussed.
机译:在德国,用于运输和存储产生热量的放射性废物的桶通常配备有螺旋盖系统,在大多数情况下,该系统配备有带有内部弹簧丝的双护套金属密封件,以长期抵抗密封件的压缩力。在操作和意外应力条件下,保持这些密封件的高密封质量对于这些桶的安全至关重要。 BAM无法排除因特定撞击情况而导致的盖系统表面的相对位移,必须就泄漏率可能增加的情况进行评估。nn为了获得此类金属密封盖系统的代表性数据,BAM开发了一种特殊的概念化法兰系统放置在适当的测试机中,以在静态和循环条件下对金属密封进行相应的机械加载。此外,法兰系统可在每次测试期间连续测量标准氦气泄漏率。nn研究的主要目的是确定外部载荷引起的安装条件变化(轴向位移)与标准氦气泄漏率之间的相关性。在这种情况下,基本参数是金属密封件在相关应力条件下的可用回弹性ru。可用回弹性ru是指密封件的组装状态与通过外部载荷释放导致泄漏率超过10-8 Pa m3 s-1的质量标准的点之间的横截面垂直差。由于意外碰撞和盖子系统变形引起的密封槽尺寸的改变,可以立即发生减轻负载的情况。此外,应收集用于开发有限元计算模型的特定于组件的基础数据。在测试中,密封件承受静态和循环载荷。所有测试均在环境温度下进行。nn本文介绍了测试配置,不同的测试系列以及当前实验的结果。介绍并讨论了典型的载荷-位移-泄漏率相关性。

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