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- W393531307 abstract "Magnesium (Mg) and its alloys are highly corrodible due to their low standard electrode potential (SEP). The conventional methods to improve corrosion resistance of Mg alloys are an anodic oxide film formation processing and chemical conversion treatment. However, these processes consume high energy. Besides, Mg products treated with these methods are hard to be recycled due to their large content of impurities. In this study, a unique Mg oxide (MgO) film, formed by a radical reaction between the pure Mg surface and radical species by X-ray irradiation, was fabricated on the Mg sample surface, and its corrosion phenomenon was evaluated. Pure Mg surface was modified by X-ray irradiation under atmospheric condition. XPS analysis indicated MgO film was formed on the surface of pure Mg after X-ray irradiation. Cross-sectional observation by TEM showed the MgO film was dense compared to the naturally formed oxide films with porous structures. The thickness of its surface modification film was increased with increase in the X-ray irradiation time. After salt water immersion test, the corrosion resistance of X-ray irradiated pure Mg for 24 hours was about four times higher than that of as-polished pure Mg sample. These results suggested X-ray irradiation of the Mg surface in a humid atmosphere was remarkably effective to improve the corrosion resistance of pure Mg by formation of the dense MgO films." @default.
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- W393531307 date "2012-12-01" @default.
- W393531307 modified "2023-09-23" @default.
- W393531307 title "Surface Characteristic and Corrosion Phenomena of X-ray Irradiated Pure Mg" @default.
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