首页> 外文会议>Annual meeting of the Institute of Nuclear Materials Management >DIRECT CANNING EU MATERIALS SUPPORTING THE 9212 TRANSITION AND URANIUM PROCESSING FACILITY (UPF) AT THE Y-12 NATIONAL SECURITY COMPLEX: SESSION: FACILITY OPERATIONS - OPERATIONS
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DIRECT CANNING EU MATERIALS SUPPORTING THE 9212 TRANSITION AND URANIUM PROCESSING FACILITY (UPF) AT THE Y-12 NATIONAL SECURITY COMPLEX: SESSION: FACILITY OPERATIONS - OPERATIONS

机译:在Y-12国家安全综合局支持9212过渡和铀加工设施(UPF)的直接罐装欧盟材料:会议:设施运营-运营

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The U.S. Department of Energy (DOE) National Nuclear Security Administration's (NNSA) Y-12 National Security Complex will continue the transition to the Highly Enriched Uranium Materials Facility (HEUMF) throughout the next decade. The continued execution of the movement of Y-12's Special Nuclear Material (SNM) from interim storage areas is crucial to the continued transformation and modernization of the site. This final and perhaps the most difficult stage of the transition effort, referred to as Area 5 Deinventory, supports the transition out of the current uranium processing facility and involves expedited transfer of materials from interim and in process storage areas that currently support Y-12. The deinventory strategy must be balanced with long term strategic planning objectives, production goals and other mission objectives which presents new challenges and opportunities for innovation to the de-inventory team and to Y-12. A recent addition to the tool kit used by the Area 5 deinventory team involves direct canning materials that would previously have been processed through consolidation casting. This process is proving to be very effective in expediting material disposition and thus is being expanded to further reduce throughput constraints.
机译:美国能源部(DOE)国家核安全局(NNSA)的Y-12国家安全中心将在接下来的十年中继续向高浓缩铀材料设施(HEUMF)过渡。 Y-12特殊核材料(SNM)从临时存储区的转移继续执行对于站点的持续转换和现代化至关重要。过渡工作的最后阶段,也可能是最困难的阶段,被称为5区库存,它支持从当前铀加工设施的过渡,并涉及从目前支持Y-12的临时和过程存储区域中快速转移材料。库存战略必须与长期战略计划目标,生产目标和其他任务目标保持平衡,这给库存团队和Y-12提出了新的挑战和创新机会。 Area 5库存团队使用的工具套件中最近增加了一个直接装罐的材料,这些材料以前已经通过固结铸造进行了加工。事实证明,该过程在加快材料处置方面非常有效,因此正在扩展以进一步减少生产量限制。

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