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APPLICATION OF NICKEL ELECTROPLATING FOR PWR REACTOR PRESSURE VESSEL CLADDING REPAIR

机译:镍电镀在PWR反应器压力容器包层修复中的应用

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SA508 low-alloy steel for a reactor vessel was exposed to primary water in a pressurized water reactor (PWR) plant because the cladding layer of type 309 stainless steel for a reactor pressure vessel (RPV) was peeled off owing to an accident in which the thermal sleeve was detached. The advantage of electrochemical deposition (ECD) Ni plating techniques is that the RPV can be repaired without significant thermal effects, and Ni has sound corrosion resistance that can withstand exposure in primary water. The corrosion rate of the damaged part was assessed, and its trend was analyzed. The essential variables of Ni plating for repair of the damaged part were derived. These conditions are applicable variables for the repair plating device and have been carefully adjusted using the repair plating device. The process for establishing ASME technical standards called code case N-840 is described. The process for developing Ni-plating devices and the electrodeposition procedure specifications are described as well.
机译:用于反应器容器的SA508低合金钢在加压水反应器(PWR)厂中暴露于初级水,因为由于事故发生了309型用于反应器压力容器(RPV)的309型不锈钢的包层层被剥离拆卸热套筒。电化学沉积(ECD)Ni电镀技术的优点是可以在没有显着的热效应的情况下修复RPV,并且Ni具有能够承受在初级水中的暴露的声音耐腐蚀性。评估了受损部分的腐蚀速率,分析了其趋势。衍生出用于修复受损部分的Ni电镀的基本变量。这些条件是修复电镀装置的适用变量,并且已经使用修复电镀装置仔细调整。描述了建立代码案例N-840的ASME技术标准的过程。还描述了开发Ni镀装置和电沉积过程规格的方法。

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