简介概要

Investigation of Formation and Inhibition Mechanism of Cerium Conversion Films on Al 2024 Alloy

来源期刊:JOURNAL OF RARE EARTHS2002年第6期

论文作者:林昌健 付燕 黄若双 邵敏华

Key words:rare earths; Ce conversion film; Al 2024 alloy; SMRE; corrosion resistance;

Abstract: To study the mechanism of formation and inhibition of Ce conversion films on Al 2024-T3 alloy, scanning microreference electrode technique (SMRE) is used to probe the potential map on Al 2024-T3 in CeCl3 solution, the localized corrosion of Al alloy decreases with immersion time and disappears finally, which results from the competition of Cl- aggression and Ce3+ inhibition on alloy surface. The results of X-ray photoelectron spectroscopy (XPS) indicate that the Ce conversion films consist of Al2O3, CeO2 and Ce2O3(Ce(OH)3), and CeO2/Ce2O3 ratio decreases with the immersion time. When a critical pH for Ce(OH)3 formation was reached, Ce(OH)3 will precipitate on the micro cathodic area on alloy surface. Consequently, H2O2, the product of the catholic reaction will oxidize a part of Ce(OH)3 to CeO2, which appears a better corrosion resistance for Al alloys.

详情信息展示

Investigation of Formation and Inhibition Mechanism of Cerium Conversion Films on Al 2024 Alloy

林昌健1,付燕1,黄若双1,邵敏华1

(1.State Key Laboratory for Physical Chemistry of Solid Surfaces, Department of Chemistry, Department of Materials Science and Engineering, Xiamen University, Xiamen 361005, China)

Abstract:To study the mechanism of formation and inhibition of Ce conversion films on Al 2024-T3 alloy, scanning microreference electrode technique (SMRE) is used to probe the potential map on Al 2024-T3 in CeCl3 solution, the localized corrosion of Al alloy decreases with immersion time and disappears finally, which results from the competition of Cl- aggression and Ce3+ inhibition on alloy surface. The results of X-ray photoelectron spectroscopy (XPS) indicate that the Ce conversion films consist of Al2O3, CeO2 and Ce2O3(Ce(OH)3), and CeO2/Ce2O3 ratio decreases with the immersion time. When a critical pH for Ce(OH)3 formation was reached, Ce(OH)3 will precipitate on the micro cathodic area on alloy surface. Consequently, H2O2, the product of the catholic reaction will oxidize a part of Ce(OH)3 to CeO2, which appears a better corrosion resistance for Al alloys.

Key words:rare earths; Ce conversion film; Al 2024 alloy; SMRE; corrosion resistance;

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