首页> 外文会议>ASME Pressure Vessels and Piping conference >POTENTIAL IMPACT OF INTERFACIAL BONDING EFFICIENCY ON USED NUCLEAR FUEL VIBRATION INTEGRITY DURING NORMAL TRANSPORTATION
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POTENTIAL IMPACT OF INTERFACIAL BONDING EFFICIENCY ON USED NUCLEAR FUEL VIBRATION INTEGRITY DURING NORMAL TRANSPORTATION

机译:正常运输过程中界面结合效率对使用的核燃料振动完整性的潜在影响

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Finite element analysis (FEA) was used to investigate the impacts of interfacial bonding efficiency at pellet-pellet and pellet-clad interfaces on surrogate of used nuclear fuel (UNF) vibration integrity. The FEA simulation results were also validated and benchmarked with reversible bending fatigue test results on surrogate rods consisting of stainless steel (SS) tubes with alumina-pellet inserts. Bending moments (M) are applied to the FEA models to evaluate the system responses of the surrogate rods. From the induced curvature, κ, the flexural rigidity EI can be estimated as EI=M/κ. The impacts of interfacial bonding efficiency include the moment carrying capacity distribution between pellets and clad and cohesion influence on the flexural rigidity of the surrogate rod system. The result also indicates that the immediate consequences of interfacial de-bonding are a load carrying capacity shift from the fuel pellets to the clad and a reduction of the composite rod flexural rigidity. Therefore, the flexural rigidity of the surrogate rod and the bending moment bearing capacity between the clad and fuel pellets are strongly dependent on the efficiency of interfacial bonding at the pellet-pellet and pellet-clad interfaces. FEA models will be further used to study UNF vibration integrity.
机译:有限元分析(FEA)用于研究丸粒-丸粒和丸粒-包层界面的界面结合效率对废旧核燃料(UNF)振动完整性的影响。 FEA仿真结果也得到了验证,并以可替代弯曲疲劳测试结果为基准,该结果是由带有氧化铝-小球插入物的不锈钢(SS)管组成的替代棒制成的。将弯矩(M)应用于FEA模型,以评估替代棒的系统响应。从引起的曲率κ可以将弯曲刚度EI估计为EI = M /κ。界面结合效率的影响包括丸粒和包层之间的矩承载力分布以及内聚力对替代棒系统的抗弯刚度的影响。结果还表明,界面脱粘的直接后果是承载能力从燃料芯块转移到包层,并且复合杆的抗弯刚度降低。因此,替代棒的抗弯刚度以及包层和燃料芯块之间的弯矩承载能力在很大程度上取决于芯块-芯块和芯块-包层界面处的界面结合效率。 FEA模型将进一步用于研究UNF振动完整性。

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