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EXPLICIT FINITE ELEMENT ANALYSES OF DROP TESTS WITH THIN-WALLED STEEL SHEET CONTAINERS FOR THE KONRAD REPOSITORY

机译:薄壁钢板容器的显式有限元分析konrad repository的薄壁钢板容器

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Alternatively to experimental drop tests, the mechanical safety analyses of containers for final disposal of radioactive waste with negligible heat generation in the German Konrad repository may be carried out by numerical simulations within the safety assessment procedure. In the past, safety assessments for thin-walled steel sheet containers have been done exclusively by prototype tests and unfavorable drop scenarios were determined by engineering judgment. So far, reliable numerical simulations do not exist. Therefore, a research project was started to develop numerical simulation approaches for drop test analyses and to determine existing safety margins. Comparisons of experimental and numerical results confirm that the Finite Element (FE) model represents the general mechanical behavior of the steel sheet container sufficiently. Simulations have been used to determine an unfavorable drop scenario resulting in large deformation and damage. This paper presents the investigations carried out as well as the further development of the FE model in terms of damage mechanics.
机译:作为实验下降试验,可以通过安全评估程序内的数值模拟来进行德国KONRAD储存库中可忽略的放射性废物的集装箱的机械安全分析。过去,通过原型测试,通过原型测试进行了薄壁钢板容器的安全评估,并通过工程判断确定了不利的下降情景。到目前为止,不存在可靠的数值模拟。因此,开始开发研究项目,以制定下降试验分析的数值模拟方法,并确定现有的安全利润率。实验和数值结果的比较证实,有限元(Fe)模型是充分的钢板容器的一般机械特性。仿真已被用于确定不利的下降情景,导致大变形和损坏。本文提出了在损伤力学方面进行的调查以及FE模型的进一步发展。

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