首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >EFFECT OF SIZE OF BUTT WELD REPAIRS ON WELD OVERLAY RESIDUAL STRESSES
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EFFECT OF SIZE OF BUTT WELD REPAIRS ON WELD OVERLAY RESIDUAL STRESSES

机译:对接焊缝尺寸对堆焊残余应力的影响

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Weld overlays have been used to provide repair and mitigation to stress corrosion cracking (SCC) susceptible butt welds in nuclear power plant piping. Among the several advantages associated with weld overlays are the beneficial compressive residual stresses that are developed in the inner portion of the component after application of the overlay. These compressive stresses can provide significant mitigation against SCC in these welds. To determine the residual stresses resulting from the weld overlay process in analytical modeling, a weld repair during original fabrication of the butt weld is typically assumed before application of the weld overlay. If the fabrication records are available, the details of the weld repair can be simulated in the analysis. However, in most cases, the weld records are not easily accessible and in instances where they are available, the quality and completeness of the information are questionable. As such, various conservative assumptions are made on the extent of the weld repair to be simulated in the analytical modeling. In this paper, the residual stress results of an axisymmetric finite element simulation of a bimetallic weld subjected to an inside surface weld repair followed by a weld overlay repair are presented. Three through-wall weld repair sizes (25%, 50% and 75% of the wall thickness without the overlay) assumed to be full 360° around the circumference were considered in the study. The results indicate that for all three weld repair cases, the inside of the configuration is very tensile after the weld repair indicating that regardless of the size of the weld repair, SCC is a possibility. The post weld repair stress distribution of the 50% and the 75% repair cases are similar indicating that an assumed 50% repair is fairly representative of repairs that can be assumed for analysis purposes. The application of the overlay resulted in favorable compressive stresses on the inside portion of the configuration for all the three weld repair cases indicating that regardless of the size of the initial weld repair, the application of the weld overlay provides mitigation against SCC.
机译:堆焊层已用于修复和缓解核电站管道中易受腐蚀的应力腐蚀开裂(SCC)对接焊缝。与焊接保护层相关的几个优点中,有一个有益的压缩残余应力,该应力在施加保护层后在部件的内部产生。这些压应力可以显着缓解这些焊缝中的SCC。为了确定分析建模中焊缝覆盖过程产生的残余应力,通常在对接焊缝的原始制造过程中,在施加焊缝覆盖层之前进行焊缝修复。如果有制造记录,则可以在分析中模拟焊缝修复的详细信息。但是,在大多数情况下,焊接记录不容易获得,并且在可用的情况下,信息的质量和完整性令人怀疑。这样,对在分析模型中要模拟的焊缝修复程度做出各种保守的假设。在本文中,给出了双金属焊缝的内表面焊缝修复后再进行堆焊修复的轴对称有限元模拟的残余应力结果。在研究中考虑了三种全壁焊缝修复尺寸(壁厚的25%,50%和75%,无覆盖层)围绕圆周完整360°。结果表明,对于所有三个焊缝修复案例,焊缝修复后结构的内部都非常拉伸,这表明不管焊缝修复的大小如何,都有可能发生SCC。 50%和75%修复情况下的焊后修复应力分布相似,这表明假定的50%修复相当代表可以为分析目的而假定的修复。对于所有三种焊接修复情况,覆盖层的施加均会在结构的内部产生有利的压应力,表明无论初始焊缝修复的大小如何,施加焊接覆盖层均可以缓解SCC。

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