首页> 外文会议>ASME Pressure Vessels and Piping conference >FATIGUE ANALYSIS OF SMALL BORE COPPER NICKEL FULL ENCIRCLEMENT SLEEVE AND SOCKET WELDS UNDER PRESSURE CYCLING
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FATIGUE ANALYSIS OF SMALL BORE COPPER NICKEL FULL ENCIRCLEMENT SLEEVE AND SOCKET WELDS UNDER PRESSURE CYCLING

机译:压力循环下小孔铜镍全包围套和焊缝的疲劳分析

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Sleeve and socket welds are often used in small bore nuclear power plant pipework where access is too limited to allow a conventional butt-weld. These welds are also used in process plants and pipelines as a permanent repair to reinforce areas such as cracks and corrosion that might threaten the structural integrity of the component. The fillet weld associated with this type of joint is particularly susceptible to lack of fusion defects which can be problematic to detect using conventional volumetric inspection techniques. The stress concentration associated with this type of defect will impact the fatigue life and pressure retaining ability of the joint. This paper provides examples of Copper/Nickel (CuNi) sleeve weld defects and presents an approach for determining the fatigue life of socket welds due to pressure cycling within a Pressurised Water Reactor (PWR) environment. This approach is based on modelling lack of fusion features using a database of sleeve and socket weld Non-Destructive Testing (NDT) records and calculating the stress range in the remaining ligament using textbook calculations. Sensitivity studies presented herein show the impact of lack of fusion and pipe size/thickness on fatigue life.
机译:袖套和承插焊通常用于小口径核电站的管道中,在这种管道中,通行空间太有限,无法进行常规的对接焊。这些焊缝还用于加工厂和管道中,作为永久性修理,以加固可能会危及组件结构完整性的裂缝和腐蚀等区域。与这种类型的接头相关的角焊缝特别容易出现熔合缺陷,而使用常规的体积检测技术很难检测出熔合缺陷。与此类缺陷相关的应力集中将影响接头的疲劳寿命和保压能力。本文提供了铜/镍(CuNi)套管焊缝缺陷的示例,并提出了一种确定因压水反应堆(PWR)环境中的压力循环而导致的承插焊疲劳寿命的方法。这种方法是基于使用套筒和承插焊无损检测(NDT)记录的数据库对缺少融合特征的模型进行建模,并使用教科书计算来计算剩余韧带的应力范围。本文介绍的敏感性研究表明,缺乏熔合和管道尺寸/厚度对疲劳寿命的影响。

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