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EVALUATION OF LASER PEENING FOR MITIGATION OF PRIMARY WATER STRESS CORROSION CRACKING IN PRESSURIZED WATER REACTORS

机译:缓解压力水反应堆中初始水应力腐蚀开裂的激光测距评估

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For several decades pressurized water reactors have experienced Primary Water Stress Corrosion Cracking (PWSCC) within Alloy 600 components and welds. The nuclear industry has developed several methods for mitigation of PWSCC to prevent costly repairs to pressurized water reactor (PWR) components including surface stress improvement by peening. Laser shock peening (LSP) is one method to effectively place the surface of a PWSCC susceptible component into compression and significantly reduce the potential for crack initiation during future operation. The Material Reliability Program (MRP) has issued MRP-335, which provides guidelines for effective mitigation of reactor vessel heads and nozzles constructed of Alloy 600 material. In addition, ASME Code Case N-729-6 provides performance requirements for peening processes applied to reactor vessel head penetrations in order to prevent degradation and take advantage of inspection relief, which will reduce operating costs for nuclear plants. LSP Technologies, Inc. (LSPT) has developed and utilized a proprietary LSP system called the Procudo® 200 Laser Peening System. System specifications are laser energy of 10 J, pulse width of 20 ns, and repetition rate of 20 Hz. Scalable processing intensity is provided through automated focusing optics control. For the presented work, power densities of 4 to 9.5 GW/cm" and spot sizes of nominally 2 mm were selected. This system has been used effectively in many non-nuclear industries including aerospace, power generation, automotive, and oil and gas. The Procudo® 200 Laser Peening System will be used to process reactor vessel heads in the United States for mitigation of PWSCC. The Procudo® 200 Laser Peening System is a versatile and portable system that can be deployed in many variations. This paper presents test results used to evaluate the effectiveness of the Procudo® 200 Laser Peening System on Alloy 600 material and welds. As a part of the qualification process, testing was performed to demonstrate compliance with industry requirements. The test results include surface stress measurements on laser peened Alloy 600, and Alloy 182 coupons using x-ray diffraction (XRD) and crack compliance (slitting) stress measurement techniques. The test results are compared to stress criteria developed based on the performance requirements documented in MRP-335 and Code Case N-729-6. Other test results include surface roughness measurements and percent of cold work induced by the peening process. The test results demonstrate the ability of the LSP process to induce the level and depth of compression required for mitigation of PWSCC and that the process does not result in adverse conditions within the material.
机译:几十年来,压水堆已在600号合金的零件和焊缝中经历了一次水应力腐蚀开裂(PWSCC)。核工业已开发出多种缓解PWSCC的方法,以防止对压水堆(PWR)组件进行昂贵的维修,包括通过喷丸来改善表面应力。激光冲击喷丸(LSP)是一种有效地压缩PWSCC敏感组件的表面并使其受压并显着降低未来运行中产生裂纹的可能性的方法。材料可靠性计划(MRP)发布了MRP-335,该指南提供了有效缓解用合金600材料制成的反应堆容器头部和喷嘴的指南。此外,ASME案例N-729-6规定了应用于反应堆容器头部穿刺的喷丸处理的性能要求,以防止性能下降并利用检查放宽的优势,这将降低核电站的运营成本。 LSP Technologies,Inc.(LSPT)已开发并使用了专有的LSP系统,称为Procudo®200激光喷丸系统。系统规格为10 J的激光能量,20 ns的脉冲宽度和20 Hz的重复频率。通过自动聚焦光学控制可提供可扩展的处理强度。对于本文提出的工作,选择了4至9.5 GW / cm“的功率密度和标称尺寸为2 mm的光斑。该系统已有效地用于许多非核工业,包括航空航天,发电,汽车,石油和天然气。 Procudo®200激光喷丸系统将用于减轻PWSCC在美国的反应堆容器的顶部,Procudo®200激光喷丸系统是一种多功能便携式系统,可以进行多种部署,本文介绍了测试结果。用于评估Procudo®200激光喷丸系统在合金600材料和焊缝上的有效性,作为鉴定过程的一部分,进行了测试以证明符合行业要求,测试结果包括对激光喷丸的合金600进行表面应力测量,以及使用X射线衍射(XRD)和裂纹柔度(纵切)应力测量技术的182合金试样,将测试结果与制定的应力标准进行比较。根据MRP-335和代码案例N-729-6中记录的性能要求进行。其他测试结果包括表面粗糙度测量和喷丸处理引起的冷加工百分比。测试结果证明了LSP工艺能够诱导缓解PWSCC所需的压缩程度和深度,并且该工艺不会导致材料内部出现不利条件。

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