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INVESTIGATIONS ON THE LONG TERM BEHAVIOR OF METAL SEALS FOR SPENT FUEL STORAGE CASKS

机译:燃料储存罐用金属密封的长期性能研究

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Metal seals are in common use as an essential component for the leak tight closure of transport and storage casks for spent fuel and vitrified high active waste from reprocessing. They are placed between the massive monolithic cask body made of ductile cast iron or forged steel and the primary and secondary lids, which are fixed with screws around the lid circumference, in order to ensure long term safe enclosure of the radioactive cask inventory. Hereby, long term reliable pressure forces in combination with a tight surface contact are as important as well maintained seal and surface qualities and dry and clean conditions during seal assembly and operation. A few years ago BAM started systematic investigation on the long term seal behavior with respect to longer storage periods and seal behavior in accidental cask scenarios with dynamic deformations of the seal groove geometry or short term drop in pressure force up to lid lifting. BAM has developed test flanges for seals with full scale cross section diameter but much smaller outer diameter to gain representative data for metal-sealed lid systems. They are placed in appropriate testing machines for relevant mechanical loading under static and dynamic conditions with the ability to measure the standard helium leakage rate continuously during each test phase. This paper focuses on BAM long term tests of different seal types with aluminum and silver jackets at three different temperatures of +20°C, +100°C and +150°C under static conditions over longer periods of time. Due to creeping effects, a reduction of the pressure force does appear during loading and unloading depending on prior holding times. So far, test results of up to 2 years indicate a clear correlation between seal pressure forces and holding time, temperature and seal type allowing for extrapolating to much longer periods of time. The paper presents basic correlations, test and evaluation procedures as well as important provisional results and gives an outlook on further investigations.
机译:金属密封件通常用作密封和密封处理后的乏燃料和玻璃化高活性废物的运输​​和储存桶的必要组成部分。它们被放置在由球墨铸铁或锻钢制成的块状整体桶体与第一和第二盖子之间,第一和第二盖子用螺钉固定在盖子的圆周上,以确保放射性罐子库存的长期安全封闭。因此,在密封件组装和操作过程中,长期可靠的压力以及紧密的表面接触与保持密封件和表面质量以及干燥和清洁条件一样重要。几年前,BAM开始对长期密封性能进行长期的系统研究,该长期密封性能涉及较长的存储时间以及在意外的桶情况下,密封槽几何形状的动态变形或直至盖升起的压力的短期下降所引起的密封性能。 BAM已开发出用于具有全尺寸横截面直径但外径小得多的密封件的测试法兰,以获得金属密封盖系统的代表性数据。将它们放置在适当的测试机中,以在静态和动态条件下进行相关的机械负载,并能够在每个测试阶段连续测量标准氦气泄漏率。本文重点介绍在铝制和银制护套的不同密封类型的BAM长期测试中,在更长的静态条件下,在+ 20°C,+ 100°C和+ 150°C的三种不同温度下进行的长期测试。由于蠕变效应,在加载和卸载过程中,压力确实会降低,具体取决于先前的保持时间。到目前为止,长达2年的测试结果表明密封压力与保持时间,温度和密封类型之间存在明显的相关性,从而可以推断出更长的时间。本文介绍了基本的相关性,测试和评估程序以及重要的临时结果,并对进一步的研究提出了展望。

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