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Oxidation of pre-oxidized GH128 alloy implanted with Ce^+ at 1000℃ 被引量:2

Oxidation of pre-oxidized GH128 alloy implanted with Ce^+ at 1000 ℃
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摘要 The influence of Ce implantation into preformed scales with a dose of 1×1017 ions/cm2 on the subsequent oxidation behavior of GH128 alloy at 1 000 ℃ in air was investigated. The pre-oxidation was carried out at 1 000 ℃ in air for 1 h and 5 h respectively. Cr2O3, NiO and NiCr2O4 formed on the surface of all specimens. Ce implantation decreased the subsequent oxidation rate of both the alloy and the 1 h pre-oxidized alloy, however, had no effect on that of the 5 h pre-oxidized alloy. The beneficial effect was most obvious in the directly implanted alloy. During the cyclic oxidation for 600 h, Ce implantation for all specimens with or without preferential oxidation played a similar beneficial effect on the oxide spallation resistance. The results indicate that Ce incorporated into the oxide scales affects the diffusion of the reaction species to some extent, the wavy interface and small grain structure make a significant contribution to improving the spallation resistance of the oxide scales. The influence of Ce implantation into preformed scales with a dose of 1 ×10^17 ions/cm^2 on the subsequent oxidation behavior of GHl28 alloy at 1000 ℃ in air was investigated. The pre-oxidation was carried out at 1000 ℃ in air for l h and 5 h respectively. Cr2O3, NiO and NiCr2O4 formed on the surface of all specimens. Ce implantation decreased the subsequent oxidation rate of both the alloy and the l h pre-oxidized alloy, however, had no effect on that of the 5 h pre-oxidized alloy. The beneficial effect was most obvious in the directly implanted alloy. During the cyclic oxidation for 600 h, Ce implantation for all specimens with or without preferential oxidation played a similar beneficial effect on the oxide spallation resistance. The results indicate that Ce incorporated into the oxide scales affects the diffusion of the reaction species to some extent, the wavy interface and small grain structure make a significant contribution to improving the spallation resistance of the oxide scales.
出处 《中国有色金属学会会刊:英文版》 CSCD 2008年第3期493-498,共6页 Transactions of Nonferrous Metals Society of China
基金 Project(50571106) supported by the National Natural Science Foundation of China
关键词 CE 氧化作用 离子注入 GH 128合金 oxidation Ce ion implantation GH 128 alloy
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