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Evolution of the Corrosion Product Film on Nickel-Aluminum Bronze and Its Corrosion Behavior in 3.5 wt NaCl Solution

机译:镍铝青铜上腐蚀产物膜的演变及其在3.5 wt%NaCl溶液中的腐蚀行为

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摘要

The in-situ studies of the corrosion product film on nickel-aluminum bronze are significant for explaining the mechanism of its corrosion resistance. In this paper, the corrosion behavior of nickel-aluminum bronze and the formation process of the protective film in 3.5 wt % NaCl solution are systematically investigated. The results of scanning electron microscope analysis and electrochemical tests indicate that the corrosion resistance of nickel-aluminum bronze is improved due to the formation of the corrosion product film. The change of local electrochemical property on the corrosion product film during the immersion time is evaluated via in-situ scanning vibrating electrode technique, and it reveals the evolution rules of ionic flux in real time. The formation process of the protective film on different phases in nickel-aluminum bronze is observed directly by in-situ atomic force microscopy as height change measurements. The α phases at different locations present different corrosion behaviors, and the lamellar α phase within the α + κIII eutectoid structure gets more serious corrosion attack. The κ phases establish a stable and dense protective film in short time, preventing the corrosion attack effectively. The β′ phase, however, suffers the most serious corrosion damage until a protective film is formed after 150 min of immersion.
机译:镍铝青铜上腐蚀产物膜的原位研究对于解释其耐腐蚀机理具有重要意义。本文系统研究了镍铝青铜的腐蚀行为以及在3.5 wt%NaCl溶液中保护膜的形成过程。扫描电子显微镜分析和电化学测试的结果表明,由于腐蚀产物膜的形成,镍铝青铜的耐蚀性得到改善。通过原位扫描振动电极技术评估了腐蚀产物膜在浸没过程中局部电化学性能的变化,实时揭示了离子通量的演化规律。通过原位原子力显微镜直接观察镍铝青铜在不同相上保护膜的形成过程,作为高度变化测量。不同位置的α相表现出不同的腐蚀行为,α+κIII共析结构内的层状α相受到更严重的腐蚀。 κ相可在短时间内形成稳定且致密的保护膜,有效防止腐蚀。但是,β'相在浸入150分钟后会遭受最严重的腐蚀破坏,直到形成保护膜为止。

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