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Surface Crack Behavior in Socket Weld of Nuclear Piping under Fatigue Loading Condition

机译:疲劳载荷条件下核管道承插焊的表面裂纹行为

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The ASME B & PV Code Sec. allows the socket weld for the nuclear piping in spite of the weakness on the weld integrity. Recently, the integrity of the socket weld is regarded as a safety concern in nuclear power plants because many failures and leaks have been reported in the socket weld. OPDE (OECD Piping Failure Data Exchange) database lists 108 socket weld failures among 2,399 nuclear piping failure cases during 1970 to 2001. Eleven failures in the socket weld were also reported in Korean NPPs. Many failure cases showed that the root cause of the failure is the fatigue and the gap requirement for the socket weld given in ASME Code was not satisfied. The purpose of this paper is to evaluate the fatigue crack behavior of a surface crack in the socket weld under fatigue loading condition considering the gap effect. Three-dimensional finite element analysis was performed to estimate the fatigue crack behavior of the surface crack. Three types of loading conditions such as the deflection due to vibration, the pressure transient ranging from P=0 to 15.51MPa, and the thermal transient ranging from T=25℃ to 288℃ were considered. The results are as follows; 1) The socket weld is susceptible to the vibration where the vibration levels exceed the requirement in the ASME Operation and Maintenance (OM) Code. 2) The effect of pressure or temperature transient load on the socket weld integrity is not significant. 3) No-gap condition gives very high possibility of the crack initiation at the socket weld under vibration loading condition. 4) For the specific systems having the vibration condition to exceed the requirement in the ASME Code OM and/or the transient loading condition from P=0 and T=25℃ to P=15.51MPa and T=288℃, radiographic examination to examine the gap during the construction stage is recommended.
机译:ASME B和PV规范尽管焊接完整性较弱,但仍可用于核管道的承插焊。近来,承插焊的完整性在核电站中被视为安全问题,因为据报道在承插焊中有许多故障和泄漏。 OPDE(经合组织管道故障数据交换)数据库列出了1970年至2001年之间2399例核管道故障案例中的108个承插焊故障。韩国核电厂也报告了11个承插焊故障。许多故障案例表明,故障的根本原因是疲劳,并且未满足ASME规范中规定的承插焊缝间隙要求。本文的目的是评估考虑间隙效应的疲劳载荷条件下承插焊缝表面裂纹的疲劳裂纹行为。进行了三维有限元分析,以估计表面裂纹的疲劳裂纹行为。考虑了三种类型的载荷条件,例如振动引起的挠度,压力瞬变在P = 0到15.51MPa之间以及热瞬变在T = 25℃到288℃之间。结果如下: 1)如果振动等级超过了ASME操作和维护(OM)规范的要求,则承插焊容易受到振动的影响。 2)压力或温度瞬态负载对承插焊缝完整性的影响不明显。 3)在空载条件下,极有可能在振动载荷条件下在承插焊缝处产生裂纹。 4)对于振动条件超过ASME规范OM要求和/或从P = 0和T = 25℃到P = 15.51MPa和T = 288℃的瞬时载荷条件的特定系统,进行射线照相检查建议在施工阶段留出空隙。

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