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AN EVALUATION OF FUEL ROD FRETTING WEAR IN SPACER GRID WITH CONFORMAL SHAPE

机译:塑料栅格燃料杆微动磨损的评价

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Turbulent flow-induced vibration in nuclear fuel may cause fretting wear of fuel rod at grid support locations. An advanced nuclear fuel for Korean PWR standard nuclear power plants (KSNPs), has been developed to get higher performance comparing to the current fuel considering the safety and economy. One of the significant features of the advanced fuel is the conformal shape in mid grid springs and dimples, which are developed to diminish the fretting wear failure. Long-term hydraulic tests have been performed to evaluate the fretting wear of the fuel rod with the conformal springs and dimples. Wear volume is a measure to predict the fretting wear performance. The shapes of a lot of scars are non-uniform such as wedge shapes, and axially non-symmetric shapes, etc., depending on the contact angle between fuel rod and springs/dimples. In addition, conformal springs and dimples make wear scars wide and thin comparing to conventional ones with convex shape. It is found that wear volumes of these kinds -of non-uniform wear scars are over-predicted when the traditionally used wear depth-dependent volume calculation method is employed. In order to predict wear volume more accurately, therefore, the measuring system with high accuracy has been used and verified by the known wear volumes of standard specimens. The wear volumes of the various wear scars have been generated by the measuring system and used for predicting the fretting wear-induced failure time. Based on new evaluation method, it is considered that the fretting wear-induced fuel failure duration with this conformal grid has increased up to 8 times compared to the traditionally used wear depth-dependent volume calculation method.
机译:核燃料中的湍流流动诱导的振动可能导致栅格支撑位的燃料棒的磨损。已经开发出用于韩国PWR标准核电站(KSNPS)的先进核燃料,以获得与考虑安全和经济的当前燃料的更高性能。高级燃料的重要特征之一是中网弹簧和凹坑中的共形状,这是开发的,以减少微动磨损失效。已经进行了长期液压试验以评估燃料杆的燃料磨损与共形弹簧和凹坑。磨损量是预测心脏磨损性能的措施。大量疤痕的形状是不均匀的如楔形形状,并且轴向非对称形状等,取决于燃料杆和弹簧/凹坑之间的接触角。另外,保形弹簧和凹坑使磨损宽且薄于具有凸形的传统形状比较。结果发现,当采用传统使用的磨损深度依赖性体积计算方法时,过度预测了这些类型的磨损量。因此,为了更准确地预测磨损体积,通过已知的标准样本的已知磨损量使用和验证具有高精度的测量系统。各种磨损疤痕的磨损量已经由测量系统产生并用于预测磨损磨损引起的失效时间。基于新的评估方法,认为,与传统使用的磨损深度依赖性体积计算方法相比,使用该保形网格的耐磨诱导的燃料失效持续时间增加了8倍。

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