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SPECIFYING MATERIAL TOUGHNESS TO AVOID BRITTLE FRACTURE INITIATION IN PIPE FITTINGS AND COMPONENTS

机译:指定材料韧性以避免管件和部件中的脆性断裂引发

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Recently, there have been a few failures with brittle fractures occurring during hydrostatic or pneumatic proof testing in pipe fittings that rekindled the need for paying attention on how to specify the toughness for pipe fittings and other components such as valves. This paper shows how an analysis procedure called the "Master Curve of Fracture Transition Temperatures" can be used to specify a Charpy shear area percent at some target temperature so that ductile initiation behavior occurs for either a surface or through-wall cracks in fittings, components or pipe material at the minimum design temperature. Due to differences in thickness, loading rate, and constraint conditions, the Charpy test transition temperature will not be at the same temperature as the minimum design temperature. In addition to the background and summary of prior efforts, several examples of full-scale pipe and fitting/valve fracture tests on different materials will be presented to show that the methodology works well. It is also possible from this method to specify the Charpy shear area percent at some temperature to ensure that brittle fracture propagation will not occur. There are some limits on this methodology for some newer steels that have very high Charpy energy values, and those conditions are also summarized.
机译:最近,已经与在重新点燃了关于如何指定管件等部件如阀门韧性关注,需要管件静水或气动验证试验过程中发生脆性断裂几次失败。本文示出了如何称为“断裂转变温度的主曲线”的分析方法可用于在一些目标温度,从而产生为任何一个表面或穿墙在接头裂缝该延性开始行为指定夏比剪切面积百分比,组件在最低设计温度或管道的材料。由于厚度,负荷率,和约束条件的差异,夏比试验转变温度将不会在相同的温度的最小设计温度。除了背景和现有努力的摘要,在不同材料上的满量程管和连接件/阀断裂试验的几个例子将被呈现给显示,该方法工作良好。另外,也可以从该方法中在某一温度以指定夏比剪切面积百分比,以确保不会发生脆性断裂的传播。有对于具有非常高的夏比能量值一些较新的钢种上这种方法的一些限制,这些条件也概括。

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