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首页> 外文期刊>Journal of the Bangladesh academy of sciences >Probabilistic Assessment of Crack Failure of Reactor Pressure Vessel (RPV) Cladding Material
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Probabilistic Assessment of Crack Failure of Reactor Pressure Vessel (RPV) Cladding Material

机译:反应堆压力容器(RPV)熔覆材料裂纹破坏的概率评估

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To design a Reactor Pressure Vessel (RPV), material property like crack must be considered as it is an unavoidable property of materials. Presence of crack in materials must be kept within limit to prevent material’s failure. So, crack propagation must be analyzed and observed. In this paper, crack propagation due to stress and materials fracture toughness of reactor pressure vessel cladding has been observed to estimate cumulative probability of crack failure using Probabilistic Fracture Mechanics (PFM). Average crack size is guessed as 3 mm and geometry factor is considered as 1.12 to analyze edge crack. Final crack analysis range has been found to be 1.8 mm with crack propagation rate of ± 30% of its average size. Variation of critical crack size and crack initiation point for several design stresses and fracture toughness has been investigated with probabilistic fracture mechanics technique. The observed crack propagation by calculating final crack size and the cumulative crack failure probability of the reactor pressure vessel materials are presented in this work.Journal of Bangladesh Academy of Sciences, Vol. 41, No. 2, 237-245, 2017.
机译:设计反应堆压力容器(RPV)时,必须考虑材料特性(例如裂纹),因为它是材料不可避免的特性。材料中的裂纹必须保持在极限范围内,以防止材料失效。因此,必须分析和观察裂纹扩展。在本文中,已经观察到由于应力和反应堆压力容器覆层的材料断裂韧性而引起的裂纹扩展,使用概率断裂力学(PFM)估计了裂纹破坏的累积概率。分析边缘裂纹时,平均裂纹尺寸估计为3 mm,几何系数为1.12。最终的裂纹分析范围为1.8毫米,裂纹扩展率为平均尺寸的±30%。利用概率断裂力学技术研究了几种设计应力和断裂韧性的临界裂纹尺寸和裂纹萌生点的变化。这项工作介绍了通过计算最终裂纹尺寸和反应堆压力容器材料的累积裂纹破坏概率观察到的裂纹扩展。 41,No.2,237-245,2017。

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