首页> 外文会议>ASME international mechanical engineering congress and exposition >MODELING THE DUCTILE BRITTLE FRACTURE TRANSITION IN REACTOR PRESSURE VESSEL STEELS USING A COHESIVE ZONE MODEL BASED APPROACH
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MODELING THE DUCTILE BRITTLE FRACTURE TRANSITION IN REACTOR PRESSURE VESSEL STEELS USING A COHESIVE ZONE MODEL BASED APPROACH

机译:基于凝聚态区域模型的反应器压力容器钢的脆性脆性断裂转变建模

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Fracture properties of Reactor Pressure Vessel (RPV) steels show large variations with changes in temperature and irradiation levels. Brittle behavior is observed at lower temperatures and/or higher irradiation levels whereas ductile mode of failure is predominant at higher temperatures and/or lower irradiation levels. In addition to such temperature and radiation dependent fracture behavior, significant scatter in fracture toughness has also been observed. As a consequence of such variability in fracture behavior, accurate estimates of fracture properties of RPV steels are of utmost importance for safe and reliable operation of reactor pressure vessels. A cohesive zone based approach is being pursued in the present study where an attempt is made to obtain a unified law capturing both stable crack growth (ductile fracture) and unstable failure (cleavage fracture). The parameters of the constitutive model are dependent on both temperature and failure probability. The effect of irradiation has not been considered in the present study. The use of such a cohesive zone based approach would allow the modeling of explicit crack growth at both stable and unstable regimes of fracture. Also it would provide the possibility to incorporate more physical lower length scale models to predict DBT. Such a multi-scale approach would significantly improve the predictive capabilities of the model, which is still largely empirical.
机译:反应堆压力容器(RPV)钢的断裂特性会随温度和辐照水平的变化而变化很大。在较低的温度和/或较高的辐射水平下观察到脆性,而在较高的温度和/或较低的辐射水平下,韧性的破坏模式占主导。除了这种取决于温度和辐射的断裂行为外,还观察到断裂韧性的明显分散。由于断裂行为的这种变化,对反应堆压力容器的安全可靠运行而言,准确估算RPV钢的断裂性能至关重要。在本研究中,正在寻求一种基于内聚区的方法,其中试图获得一个统一的定律,以捕获稳定的裂纹扩展(延性断裂)和不稳定的破坏(解理断裂)。本构模型的参数取决于温度和失效概率。在本研究中尚未考虑辐照的影响。这种基于粘聚区的方法的使用将允许在稳定和不稳定的断裂状态下对显式裂纹扩展进行建模。也将提供合并更多物理上较低长度的比例模型来预测DBT的可能性。这种多尺度方法将显着提高模型的预测能力,但在很大程度上仍是经验性的。

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