均匀退火对超级铁素体不锈钢S44660晶间腐蚀行为的影响

IF 7.4 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Corrosion Science Pub Date : 2025-05-01 Epub Date: 2025-02-14 DOI:10.1016/j.corsci.2025.112783
Bin Wang , Yugui Li , Huaying Li , Guanghui Zhao , Yaohui Song , Hui Xu
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引用次数: 0

摘要

研究了均匀化退火温度和时间对超级铁素体不锈钢(SFSS) S44660晶间腐蚀(IGC)行为的影响。结果表明,S44660中IGC的高敏感性是由于沿晶界析出的M23C6在晶间形成了缺铬区。此外,在三种均质退火条件下:750°C 5 min, 780°C 2 min和800°C 30 s下处理后,IGC抗性恢复。这种恢复归因于在均匀化退火过程中,颗粒内的铬原子扩散到贫铬区,补偿了碳化物析出造成的铬损失。通过均匀化退火控制铬的扩散,证实了S44660中IGC的自愈。
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Influence of homogenized annealing on the intergranular corrosion behavior of super ferritic stainless steel S44660
This study investigated the impact of homogenization annealing temperature and time on the intergranular corrosion (IGC) behavior of super ferritic stainless steel (SFSS) S44660. The results revealed the high susceptibility of IGC in S44660 was due to an intergranular chromium-depleted zone resulting from the precipitation of M23C6 along grain boundaries. Furthermore, IGC resistance was restored after treatment under three homogenized annealing conditions: 750 °C for 5 min, 780 °C for 2 min, and 800 °C for 30 s. This restoration was attributed to intragranular chromium atoms diffusing into the chromium-depleted zone during homogenization annealing, compensating for chromium loss from carbide precipitation. It has been confirmed that the self-healing of IGC in S44660 occurs through the process of controlling chromium diffusion by homogenizing annealing.
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来源期刊
Corrosion Science
Corrosion Science 工程技术-材料科学:综合
CiteScore
13.60
自引率
18.10%
发文量
763
审稿时长
46 days
期刊介绍: Corrosion occurrence and its practical control encompass a vast array of scientific knowledge. Corrosion Science endeavors to serve as the conduit for the exchange of ideas, developments, and research across all facets of this field, encompassing both metallic and non-metallic corrosion. The scope of this international journal is broad and inclusive. Published papers span from highly theoretical inquiries to essentially practical applications, covering diverse areas such as high-temperature oxidation, passivity, anodic oxidation, biochemical corrosion, stress corrosion cracking, and corrosion control mechanisms and methodologies. This journal publishes original papers and critical reviews across the spectrum of pure and applied corrosion, material degradation, and surface science and engineering. It serves as a crucial link connecting metallurgists, materials scientists, and researchers investigating corrosion and degradation phenomena. Join us in advancing knowledge and understanding in the vital field of corrosion science.
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