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High-Burnup Spent Nuclear Fuel Interface Bonding Efficiency Study

机译:高燃耗乏核燃料界面键合效率研究

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To investigate the impact of interfacial bonding efficiency at pellet-pellet and pellet-clad interfaces of high-burnup (HBU) spent nuclear fuel (SNF) on system dynamic performance, the finite element analyses (FEA) simulations were performed on H. B. Robinson (HBR) fuel rod. The interfacial layer was modeled as a cohesive bonding medium. Bending moments M were applied to FEA model to evaluate the system responses. From the resultant bending curvature, κ, flexural rigidity EI can be estimated as EI = M/κ. The FEA simulation results were benchmarked with experimental results from Cyclic Integrated Reversal Bending Fatigue Tester (CIRFT) data of HBR fuel rods. The immediate consequence of interface debonding is a shift in load-carrying capacity from the fuel pellets to the clad, which results in a reduction in composite rod system flexural rigidity. Therefore, the interface bonding efficiency at the pellet-pellet and pellet-clad interfaces can significantly dictate the SNF system dynamic performance.
机译:为了研究高燃耗(HBU)乏核燃料(SNF)的颗粒-颗粒和颗粒-包层界面的界面结合效率对系统动态性能的影响,在HB Robinson(HBR)上进行了有限元分析(FEA)模拟)燃油杆。界面层被建模为内聚粘合介质。将弯矩M应用于FEA模型以评估系统响应。根据合成弯曲曲率κ,可以将弯曲刚度EI估计为EI = M /κ。 FEA仿真结果以HBR燃料棒的循环综合反向弯曲疲劳测试仪(CIRFT)数据的实验结果为基准。界面剥离的直接后果是承载能力从燃料芯块转移到包层,这导致复合杆系统的抗弯刚度降低。因此,在丸粒-丸粒和丸粒-包层的界面处的界面结合效率可以显着决定SNF系统的动态性能。

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