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Structural Integrity Evaluation for Interference-fit Flywheels in Reactor Coolant Pumps of Nuclear Power Plants

机译:核电站反应堆冷却剂泵中过盈配合飞轮的结构完整性评估

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This study is concerned with structural integrity evaluations for the interference-Fit flywheels in reactor coolant pumps (RCPs) of nuclear power plants. Stresses in the flywheel due to the shrinkage loads and centrifugal loads at the RCP normal operation speed, design overspeed and joint-release speed are obtained using the finite element method (FEM), where release of the deformation-controlled stresses as a result of structural interactions during rotation is considered. Fracture mechanics evaluations for a series of cracks assumed to exist in the flywheel are conducted, considering ductile (fatigue) and non-ductile fracture, and stress intensity factors are obtained for the cracks using the finite element alternating method (FEAM). From analysis results, it is found that fatigue crack growth rates calculated are negligible for smaller cracks. Meanwhile, the material resistance to non-ductile fracture in terms of the critical stress intensity factor (K{sub}(IC)) and the nil-ductility tr ansition reference temperature (RT{sub}(NDT)) are governing factors for larger cracks.
机译:这项研究与核电站反应堆冷却剂泵(RCP)中的过盈配合飞轮的结构完整性评估有关。使用有限元方法(FEM)获得在RCP正常运行速度,设计超速和接头释放速度下由于收缩载荷和离心载荷引起的飞轮中的应力,其中由于结构而释放变形控制应力考虑旋转过程中的相互作用。考虑到延性(疲劳)和非延性断裂,对假定存在于飞轮中的一系列裂纹进行了断裂力学评估,并使用有限元交替法(FEAM)获得了裂纹的应力强度因子。从分析结果可以发现,对于较小的裂纹,计算出的疲劳裂纹扩展率可以忽略不计。同时,从临界应力强度因子(K {sub}(IC))和零延性转变参考温度(RT {sub}(NDT))的角度出发,材料对非延性断裂的抗性是决定材料抗塑性断裂的主要因素。裂缝。

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