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Analysis of stress corrosion cracking in alloy 718 following commercial reactor exposure

机译:商业反应堆暴露后合金718的应力腐蚀开裂分析

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Alloy 718 is generally considered a highly corrosion-resistant material but can still be susceptible to stress corrosion cracking (SCC). The combination of factors leading to SCC susceptibility in the alloy is not always clear enough. In the present work, alloy 718 leaf spring (LS) materials that suffered stress corrosion damage during two 24-month cycles in pressurized water reactor service, operated to >45 MWd/mtU burn-up, was investigated. Compared to archival samples fabricated through the same processing conditions, little microstructural and property changes occurred in the material with in-service irradiation, contrary to high dose rate laboratory-based experiments reported in literature. Though the lack of delta phase formation along grain boundaries would suggest a more SCC resistant microstructure, grain boundary cracking in the material was extensive. Crack propagation routes were explored through focused ion beam milling of specimens near the crack tip for transmission electron microscopy as well as in polished plan view and cross-sectional samples for electron backscatter diffraction analysis. It has been shown in this study that cracks propagated mainly along random high-angle grain boundaries, with the material around cracks displaying a high local density of dislocations. The slip lines were produced through the local deformation of the leaf spring material above their yield strength. The cause for local SCC appears to be related to oxidation of both slip lines and grain boundaries, which under the high in-service stresses resulted in crack development in the material. (C) 2015 Elsevier B.V. All rights reserved.
机译:合金718通常被认为是高度耐腐蚀的材料,但仍然容易受到应力腐蚀开裂(SCC)的影响。导致合金中SCC敏感性的因素的组合并不总是很清楚。在目前的工作中,研究了在压力水反应堆服务的两个24个月循环中遭受应力腐蚀破坏的合金718板簧(LS)材料,其燃耗> 45 MWd / mtU。与通过相同加工条件制造的档案样品相比,使用中的辐照材料几乎没有发生微观结构和性能变化,这与文献中报道的基于实验室的高剂量率实验相反。尽管沿晶界缺乏δ相形成将表明其具有更强的抗SCC性,但材料中的晶界开裂是广泛的。通过聚焦离子束铣削裂纹尖端附近的样品进行透射电子显微镜以及在抛光的平面图和横截面样品中进行电子反向散射衍射分析,探索了裂纹的传播途径。这项研究表明,裂纹主要沿着随机的高角度晶界扩展,裂纹周围的材料表现出较高的位错密度。滑移线是通过板簧材料在其屈服强度之上的局部变形产生的。局部SCC的原因似乎与滑移线和晶界的氧化有关,这在高使用应力下会导致材料产生裂纹。 (C)2015 Elsevier B.V.保留所有权利。

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