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MODEL BASED STRUCTURAL EVALUATION DESIGN OF OVERPACK CONTAINER FOR BAG-BUSTER PROCESSING OF TRU WASTE DRUMS

机译:基于模型的桶式垃圾桶杂物袋包装容器结构评价与设计

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This paper describes a materials and computational model based analysis utilized to design an engineered "overpack" container capable of maintaining structural integrity for confinement of transuranic wastes undergoing the cryo-vacuum stress based "Bag-Buster" process and satisfying DOT 7 A waste package requirements. The engineered overpack is a key component of the "Ultra-BagBuster" process/system being commercially developed by UltraTech International for potential DOE applications to non-intrusively breach inner confinement layers (poly bags/packaging) within transuranic (TRU) waste drums. This system provides a lower cost/risk approach to mitigate hydrogen gas concentration buildup limitations on transport of high alpha activity organic transuranic wastes. Four evolving overpack design configurations and twio materials (low carbon steel and 300 series stainless) were considered and evaluated using non-linear finite element model analyses of structural response. Properties comparisons show that 300-series stainless is required to provide assurance of ductility and structural integrity at both room and cryogenic temperatures. The overpack designs were analyzed for five accidental drop impact orientations onto an unyielding surface (dropped flat on bottom, bottom corner, side, top corner, and top). The first three design configurations failed the bottom and top corner drop orientations (flat bottom, top, and side plates breached or underwent material failure). The fourth design utilized a protruding rim-ring (skirt) below the overpack's bottom plate and above the overpack's lid plate to absorb much of the impact energy and maintained structural integrity under all accidental drop loads at both room and cryogenic temperature conditions. Selected drop testing of the final design will be required to confirm design performance.
机译:本文介绍了一种基于材料和计算模型的分析方法,该分析方法用于设计工程化的“外包装”容器,该容器能够保持结构完整性,以限制超低温废物受到基于低温-真空应力的“袋式除尘器”处理并满足DOT 7 A废物包装要求。工程化的外包装是UltraTech International商业开发的“ Ultra-BagBuster”工艺/系统的关键组成部分,其潜在的DOE应用可以非侵入性地破坏超铀(TRU)废料桶内的内部限制层(塑料袋/包装)。该系统提供了一种降低成本/风险的方法,以减轻因高α活性有机超铀废物运输而引起的氢气浓度累积限制。考虑了四种演变的外包装设计配置和两种材料(低碳钢和300系列不锈钢),并使用了结构响应的非线性有限元模型分析进行了评估。性能比较表明,需要300系列不锈钢来确保在室温和低温下均具有延展性和结构完整性。分析了外包装设计在不屈服的表面上的五个意外跌落冲击方向(将其平放于底部,底角,侧面,顶角和顶部)。前三个设计配置使底部和顶部角部掉落方向失败(平坦的底部,顶部和侧板破裂或发生材料故障)。第四种设计利用了外包装底板下方和外包装盖板上方的凸边圈(裙边)来吸收大部分的冲击能量,并在室温和低温条件下的所有意外跌落载荷下保持结构完整性。需要选择最终设计的跌落测试以确认设计性能。

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