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首页> 外文期刊>Packaging, transport, storage & security of radioactive material >From experiment to appropriate finite element model-safety assessment for ductile cast iron casks demonstrated by means of IAEA puncture drop test
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From experiment to appropriate finite element model-safety assessment for ductile cast iron casks demonstrated by means of IAEA puncture drop test

机译:从实验到适当的有限元模型安全性评估,通过国际原子能机构(IAEA)穿刺试验对球墨铸铁桶进行评估

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摘要

In the approval procedure of transport packages for radioactive materials, the competent authority mechanical and thermal safety assessment is carried out in Germany by BAM Federal Institute for Materials Research and Testing. The combination of experimental investigations and numerical calculations in conjunction with materials and components testing is the basis of the safety assessment concept of the BAM. Among other mechanical test scenarios, a 1 metre drop test onto a steel bar has to be considered for the application of the hypothetical accident conditions to Type B packages according to IAEA regulations. Within the approval procedure for the new German package design of the HLW cask CASTOR~R HAW 28M, designed by GNS Gesellschaft fur Nuklear-Service Germany, a puncture drop test was performed with a half-scale model of the cask at -40℃. For independent assessment and to control the safety analysis presented by the applicant, BAM developed a complex finite element (FE) model for a dynamical ABAQUS/Explicit™ analysis. This paper describes in detail the use of the FE method for modelling the puncture drop test within an actual assessment strategy. At first, investigations of the behaviour of the steel bar were carried out. Different friction coefficients and the material law of the bar were analysed by using a 'rigid-body' approximation for the cask body. In the next step, a more detailed FE model with a more realistic material definition for the cask body was developed. The validation of calculated strains was carried out by comparison with the results of the strain gauges located at the relevant points of the cask model. The influence of the FE meshing is described. Finally, the validated FE half-scale model was expanded to full-scale dimension. Scaling effects were analysed. The model was used for safety assessment of the package to be approved.
机译:在放射性物质运输包装的批准程序中,德国BAM联邦材料研究与测试研究所对主管当局进行了机械和热安全评估。 BAM安全评估概念的基础是将实验研究和数值计算与材料和组件测试相结合。除其他机械测试方案外,还必须考虑根据IAEA规定将假想事故条件应用于B型包装的钢棒上跌落1米的测试。在由GNS Gesellschaft fur Nuklear-Service德国设计的HLW酒桶CASTOR〜R HAW 28M的新德国包装设计的批准程序中,对半身模型的酒桶在-40℃进行了刺穿试验。为了进行独立评估并控制申请人提出的安全性分析,BAM开发了用于动态ABAQUS / Explicit™分析的复杂有限元(FE)模型。本文详细介绍了有限元方法在实际评估策略中对穿刺下降测试建模的使用。首先,对钢筋的性能进行了研究。通过使用“刚体”近似法对桶体进行分析,分析了不同的摩擦系数和杆的材料定律。下一步,开发了更详细的有限元模型,并为桶身提供了更真实的材料定义。通过与位于容器模型相关点的应变仪的结果进行比较,对计算出的应变进行了验证。描述了FE啮合的影响。最后,将经过验证的有限元半比例模型扩展到完整尺寸。分析了缩放效果。该模型用于待批准包装的安全性评估。

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