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INVESTIGATION ON CONSTRAINT EFFECT OF A REACTOR PRESSURE VESSEL SUBJECTED TO PRESSURIZED THERMAL SHOCKS

机译:反应堆压力容器受热冲击的约束作用研究

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The integrity of a reactor pressure vessel (RPV) related to pressurized thermal shocks (PTSs) has been extensively studied. This paper introduces the method of using fracture mechanics for the integrity analysis of a RPV subjected to PTS transients. A 3-D finite element (FE) model is used to perform thermal and fracture mechanics analyses by considering both elastic and elastic-plastic material models. The results show that the linear elastic analysis leads to a more conservative result than the elastic-plastic analysis. The variation of the T-stress and Q-stress (crack tip constraint loss) of a surface crack in a RPV subjected to PTSs is studied. A shallow crack is assumed in the RPV and the corresponding constraint effect on fracture toughness of the material is quantified by the K-T method. The safety margin of the RPV is larger based on the K-T approach than only based on the K approach. The J-Q method with the modified boundary layer formulation (MBL) is used for the crack tip constraint analysis by considering elastic-plastic material properties. For all transient times, the real stress is lower than that calculated from small scale yielding (SSY) due to the loss of crack tip constraint.
机译:已经广泛研究了与加压热冲击(PTS)相关的反应器压力容器(RPV)的完整性。本文介绍了利用裂缝力学的方法,用于对PTS瞬变进行RPV的完整性分析。 3-D有限元(FE)模型用于通过考虑弹性和弹性塑料材料模型来进行热和断裂力学分析。结果表明,线性弹性分析导致比弹性塑性分析更保守的结果。研究了对PTSS的RPV中表面裂纹的T应力和Q应力(裂纹尖端约束)的变化。在RPV中假设浅裂缝,并通过K-T方法量化对材料的断裂韧性的相应约束效果。 RPV的安全裕度基于K-T方法比仅基于K方法。通过考虑弹性塑料材料特性,使用改进的边界层配方(MBL)的J-Q方法用于裂纹尖端约束分析。对于所有瞬态时间,由于裂纹尖端约束的损失,实际应力低于根据屈服(SSY)的小规模计算的。

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