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Analysis for the mechanism of accelerated corrosion on low alloy steel in air-solution alternating condition

気液交番環境における低合金鋼の腐食加速機構の解析

大谷 恭平  ; 塚田 隆 ; 上野 文義  

Otani, Kyohei; Tsukada, Takashi; Ueno, Fumiyoshi

本研究では、低合金鋼上に気液交番環境下で形成された鉄さび層を、断面観察および分析により調査し、気液交番環境下での低合金鋼の腐食加速機構を明らかにした。断面観察および分析より、赤さび層(FeOOH),クラスト層(Fe$$_{3}$$O$$_{4}$$),内部結晶(Fe$$_{3}$$O$$_{4}$$)、および内部鉄さび層からなる多層の鉄さび層が低合金鋼上に形成されたことがわかった。この多層鉄さび層が酸素の還元反応を加速したことにより、低合金鋼の腐食速度が加速されたと考えられる。

In this study, the iron rust layer formed on the low alloy steel under air-solution alternating conditions was investigated by cross-sectional observation and analysis, and the mechanism of the accelerated corrosion of the steel under alternating conditions was clarified. The observations and analysis showed that the multilayered iron rust layer composed of the red rust layer (FeOOH), rust crust layer (Fe$$_{3}$$O$$_{4}$$), inner crystal (Fe$$_{3}$$O$$_{4}$$), and inner rust layer was formed on the low alloy steel. It can be considered that the multilayered iron rust layer accelerated the cathodic reaction rate of dissolved oxygen under alternating conditions. This acceleration is the reason why the corrosion rate of the low alloy steel under alternating conditions was accelerated.

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