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INSPECTION AND REPAIR TECHNIQUES AND STRATEGIES FOR ALLOY 600 PWSCC IN REACTOR VESSEL HEAD CRD NOZZLES AND WELDS

机译:反应堆头CRD喷嘴和焊接中合金600 PWSCC的检查和修复技术和策略

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As a result of the Alloy 600 PWSCC CRD nozzle leaks discovered in the fall of 2000 and spring of 2001 in several US plants, the NRC has recommended a more pro-active effort by U.S. utilities to inspect similarly susceptible nozzles in all US plants. The primary safety concern is circumferential cracks that can permit the nozzle to separate from the head at high velocity and produce a large-break leak in the reactor vessel. A secondary concern is head leakage from any through-wall cracks in the nozzle or Jgroove weld area. Although the fundamental weld and seal design are similar for all US PWR plants, the various surrounding geometry and repair probability considerations require multiple inspection and repair alternatives. Geometry issues include the head insulation design that influences the ability to perform visual examinations from above the head, and the presence or absence of thermal sleeves and funnels governing the type of NDE probes than can be used. Repair probability considerations primarily include the likelihood for repair of a small or large number of nozzles and the length of time the repair must last before a head replacement. This paper discusses the various inspection and repair alternatives offered by one service vendor and discusses a decision process for planning the inspection and repair effort.
机译:由于合金600 PWSCC CRD喷嘴泄漏在2000年和2001年春季发现的几个美国植物中,NRC推荐了美国公用事业更积极的努力来检查所有美国植物中的类似易感喷嘴。主要的安全问题是圆周裂缝,其可以允许喷嘴以高速度与头部分开,并在反应器容器中产生大断裂泄漏。二次关注的是喷嘴或JGroove焊接区域中的任何通墙裂缝的头部泄漏。尽管所有US PWR工厂的基本焊接和密封设计类似,但各种周围的几何和修复概率考虑因素需要多次检查和修复替代方案。几何问题包括头绝缘设计,影响从头部上方进行视觉检查的能力,以及控制NDE探针类型的热套筒和漏斗的存在或不存在。修复概率考虑主要包括修复小型或大量喷嘴的可能性,并且修复在头部更换之前必须持续的时间长度。本文讨论了一个服务供应商提供的各种检查和修复替代品,并讨论了规划检查和维修工作的决策过程。

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