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Experimental Study on Surrogate Nuclear Fuel Rods Under Reversed Cyclic Bending

机译:逆转循环弯曲下替代核燃料棒的实验研究

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The mechanical behavior of spent nuclear fuel (SNF) rods under reversed cyclic bending or bending fatigue must be understood to evaluate their vibration integrity in a transportation environment. This is especially important for high-burnup fuels (>45 GWd/MTU), which have the potential for increased structural damage. It has been demonstrated that the bending fatigue of SNF rods can be effectively studied using surrogate rods. In this investigation, surrogate rods made of stainless steel 304 cladding and aluminum oxide pellets were tested under load or moment control at a variety of amplitude levels at 5 Hz using the Cyclic Integrated Reversible-Bending Fatigue Tester developed at Oak Ridge National Laboratory. The behavior of the rods was further characterized using flexural rigidity and hysteresis data, and fractography was performed on the failed rods. The proposed surrogate rods captured many of the characteristics of deformation and failure mode observed in SNF, including the linear-to-nonlinear deformation transition and large residual curvature in static tests, pellet-pellet interface and pellet cladding mechanical interaction, failure mechanisms, and large variations in the initial structural condition. Rod degradation was measured and characterized by measuring the flexural rigidity; the degradation of the rigidity depended on both the moment amplitude applied and the initial structural condition of the rods. It was also shown that a cracking initiation site can be located on the internal surface or the external surface of cladding. Finally, fatigue damage to the bending rods can be described in terms of flexural rigidity, and the fatigue life of rods can be predicted once damage model parameters are properly evaluated. The developed experimental approach, test protocol, and analysis method can be used to study the vibration integrity of SNF rods in the future.
机译:必须理解在逆转循环弯曲或弯曲疲劳下的废核燃料(SNF)棒的机械特性,以评估其在运输环境中的振动完整性。这对于高燃烧燃料(> 45 GWD / MTU)特别重要,这具有增加的结构损伤。已经证明,可以使用替代棒有效地研究SNF棒的弯曲疲劳。在该研究中,使用在橡木岭国家实验室开发的循环集成可逆弯曲的疲劳测试仪在5Hz的载荷或时刻控制下测试由不锈钢304包层304包层304包层和氧化铝颗粒制成的替代棒。使用弯曲刚度和滞后数据的进一步表征杆的行为,并且在故障杆上进行断裂。所提出的替代棒捕获了在SNF中观察到的变形和失效模式的许多特征,包括线性到非线性变形转变和静态试验中的大残留曲率,颗粒颗粒界面和颗粒包层机械相互作用,故障机构和大初始结构条件的变化。通过测量弯曲刚度来测量杆状劣化,其特征;刚度的劣化依赖于所施加的力矩幅度和杆的初始结构条件。还表明,裂化起始位点可以位于内表面或包层的外表面上。最后,可以在弯曲刚度方面描述对弯曲杆的疲劳损坏,并且可以预测杆的疲劳寿命一旦正确评估了损坏模型参数。开发的实验方法,试验协议和分析方法可用于研究未来SNF棒的振动完整性。

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