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Fabrication Flaws in Reactor Pressure Vessel Repair Welds

机译:反应堆压力容器维修焊缝中的加工缺陷

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The Pacific Northwest National Laboratory (PNNL) is developing a generalized flaw size and density distribution for the population of U.S. reactor pressure vessels (RPVs). The purpose of the generalized flaw distribution is to predict vessel-specific flaw rates for use in probabilistic fracture mechanics calculations that estimate vessel failure probability. Considerable progress has been made on construction of an engineering database of fabrication flaws in U.S. nuclear RPVs. The fabrication processes and product forms used to construct U.S. RPVs are represented in the database.This paper describes the fabrication flaw distribution and characterization in the repair weld metal of reactor pressure vessels. This work indicates that large flaws occur in these repairs and the flaws are complex in composition and sometimes include cracks on the repair ends. Parametric analysis using an exponential fit is performed on the data. A description of repair flaw morphology is provided. Fabrication flaws in repairs are: characterized using high-sensitivity nondestructive ultrasonic testing, validated by other nondestructive evaluation (NDE) techniques, and complemented by destructive testing.
机译:太平洋西北国家实验室(PNNL)正在为美国反应堆压力容器(RPV)的人群开发通用的缺陷尺寸和密度分布。广义缺陷分布的目的是预测特定于容器的缺陷率,以用于概率断裂力学计算中,以估算容器的失效概率。在建造美国核​​RPV中制造缺陷的工程数据库方面已经取得了可观的进展。在数据库中表示用于构造美国RPV的制造过程和产品形式。 本文描述了反应堆压力容器修复焊缝金属的制造缺陷分布和特征。这项工作表明,在这些维修过程中会出现较大的缺陷,并且这些缺陷的成分复杂,有时还会在维修端出现裂纹。对数据执行使用指数拟合的参数分析。提供了修复缺陷形态的描述。维修中的制造缺陷包括:使用高灵敏度的非破坏性超声波测试进行表征,并通过其他非破坏性评估(NDE)技术进行验证,并辅以破坏性测试。

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