首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference: Aging Management and Component Analysis; 20030720-20030724; Cleveland,OH; US >MECHANICAL STRESS IMPROVEMENT PROCESS (MSIP) USED TO PREVENT AND MITIGATE PRIMARY WATER STRESS CORROSION CRACKING (PWSCC) IN REACTOR VESSEL PIPING AT V.C. SUMMER
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MECHANICAL STRESS IMPROVEMENT PROCESS (MSIP) USED TO PREVENT AND MITIGATE PRIMARY WATER STRESS CORROSION CRACKING (PWSCC) IN REACTOR VESSEL PIPING AT V.C. SUMMER

机译:机械应力改善过程(MSIP)用于预防和缓解V.C.反应器管道中的主要水应力腐蚀开裂(PWSCC)。夏天

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During the October 2000 refueling outage at the V.C. Summer Nuclear Station, a leak was discovered in one of the three reactor vessel hot leg nozzle to pipe weld connections. The root cause of this leak was determined to be extensive weld repairs causing high tensile stresses throughout the pipe weld; leading to primary water stress corrosion cracking (PWSCC) of the Alloy 82/182 (Inconel). This nozzle was repaired and V.C. Summer began investigating other mitigative or repair techniques on the other nozzles. During the next refueling outage V.C. Summer took mitigative actions by applying the patented Mechanical Stress Improvement Process (MSIP) to the other hot legs. MSIP contracts the pipe on one side of the weldment, placing the inner region of the weld into compression. This is an effective means to prevent and mitigate PWSCC. Analyses were performed to determine the redistribution of residual stresses, amount of strain in the region of application, reactor coolant piping loads and stresses, and effect on equipment supports. In May 2002, using a newly designed 34-inch clamp, MSIP was successfully applied to the two hot-leg nozzle weldments. The pre- and post-MSIP NDE results were highly favorable. MSIP has been used extensively on piping in boiling water reactor (BWR) plants to successfully prevent and mitigate SCC. This includes Reactor Vessel nozzle piping over 30-inch diameter with 2.3-inch wall thickness similar in both size and materials to piping in pressurized water reactor (PWR) plants such as V.C. Summer. The application of MSIP at V.C. Summer was successfully completed and showed the process to be predictable with no significant changes in the overall operation of the plant. The pre- and post- nondestructive examination of the reactor vessel nozzle weldment showed no detrimental effects on the weldment due to the MSIP.
机译:在2000年10月,V.C。的加油中断在夏季核电站,三个反应堆容器的热管嘴至管道焊接连接之一发现泄漏。确定该泄漏的根本原因是广泛的焊缝修复,从而在整个管道焊缝中造成高的拉应力。导致铝合金82/182(Inconel)的初次水应力腐蚀开裂(PWSCC)。维修该喷嘴并进行V.C.萨默斯开始研究其他喷嘴上的其他缓解或修复技术。在下一次加油中断期间Summer通过将专利的机械应力改善工艺(MSIP)应用于其他热点,从而采取了缓解措施。 MSIP在焊件的一侧收缩管道,将焊缝的内部区域压缩。这是预防和减轻PWSCC的有效手段。进行分析以确定残余应力的重新分布,应用区域中的应变量,反应堆冷却剂管道负载和应力以及对设备支撑的影响。 2002年5月,使用新设计的34英寸夹具,MSIP成功应用于两个热腿喷嘴焊件。 MSIP之前和之后的NDE结果非常令人满意。 MSIP已广泛用于沸水反应堆(BWR)厂的管道中,以成功预防和减轻SCC。这包括直径超过30英寸,壁厚2.3英寸的反应堆容器喷嘴管道,其尺寸和材料均类似于V.C等压水反应堆(PWR)工厂中的管道。夏天。 MSIP在V.C.的应用夏季已成功完成,并表明该过程是可预测的,并且工厂的整体运行没有明显变化。反应堆容器喷嘴焊件的无损检测前后均未发现由于MSIP对焊件的有害影响。

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