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Zirconium Oxide Coating on Anodized Aluminum by the Sol-Gel Process Combined with Ultraviolet Irradiation at Ambient Temperature
Authors:Shinji Hirai  Kazuyoshi Shimakage  Motoi Sekiguchi  Kenji Wada  Akihiko Nukui
Affiliation:Department of Materials Science and Engineering, Muroran Institute of Technology, 27–1 Mizumoto-cho, Muroran-shi, Hokkaido 050, Japan;National Institute for Research in Inorganic Materials, 1–1 Namiki, Tsukuba-shi, Ibaragi 305, Japan
Abstract:Instead of the conventional sol-gel process in which heat treatment is used to form a dense composite film after dipping/withdrawing a substrate into/from the sol, a new sol-gel process incorporating ultraviolet (UV) irradiation at ambient temperature has been attempted to improve the alkaline corrosion resistance of aluminum. A sol-gel film prepared by UV irradiation at ambient temperature indicated that alkaline corrosion resistance is superior in the range of 2.4 times to 2.6 times that of the conventional composite film heated at 573 K. The densification of the coating layer due to the elimination of residual organics induced by photoexcitation was responsible for the improvement in alkaline corrosion resistance. The high alkaline corrosion resistance of the irradiated film may be attributed to the formation of a dense coating layer and the self-repairing action caused by repetition for preparation and dissolution of the reactant in the penetrating path of NaOH solution into the composite film.
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