Characterization of Amorphous Zr-Cu Alloy Surfaces by Electron Probe Microanalysis and Auger Electron Spectroscopy
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概要
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The surfaces of an amorphous Zr-Cu alloys exposed to a laboratory air with the relative humidity of about 60±10% at room temperature were studied by Auger electron spectroscopy (AES) and scanning electron microscope equipped with an energy dispersive X-ray analyzer (SEM/EDX). In general, the oxidation behavior of the roll-side of the specimen which was in contact with the chilling wheel during quenching was different from that of the freely solidified surface. AES analysis of the specimen surfaces kept in a desiccator for 23 months showed that the composition of the topmost region corresponded almost to ZrO_2, although some copper was also detected. Thickness of the surface film of ZrO_2 in the corrosion resistant region was about 4-5 nm, while that on the roll-side was smaller, especially in the region where a large amount of Cu was detected. Under the surface film, a large enrichment of Cu was estimated by non-destructive analysis of the AES data. The SEM/EDX observation of the cross-sections heavily corroded specimens clarified that the corrosion products consists of several layers of Cu-rich layers and Zr-rich layers which appear alternately. It is speculated that a metallic copper layer is formed under the surface film by preferential diffusion of Cu to the surface, which makes the ZrO_2 layer unstable and results to the break-down of the film.amorphous alloyzirconium-copper alloyatmospheric corrosionsurface analysis
- 東北大学の論文
- 1995-03-30
著者
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ASAMI Katsuhiko
Institute for Materials Research, Tohoku University
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Murakami Yoshihiro
Institute For Materials Research Tohoku University
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Murakami Yoshihiro
Institute For Materials Research
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Kimura Hisa-michi
Institute For Materials Research Tohoku University
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Asami Katsuhiko
Institute For Material Research Tohoku University
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Kikuchi Michio
Institute For Materials Research Tohoku University
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