High temperature oxidation resistance of cluster model designed alloys Cu-Cu12-[Mx/(12+x)Ni12/(12+x)]5 (M=Si, Cr, Cr+Fe)

Author:

Li Xiao-Na ,Zheng Yue-Hong ,Li Zhen ,Wang Miao ,Zhang Kun ,Dong Chuang , , ,

Abstract

Based on the stable solid solution cluster model, cupronickel is microalloylized in this paper. Alloys with different Ni-M (M=Si, Cr, Cr+Fe) ratios are designed at constant atomic ration of Cu (72.22 at.%). The high temperature oxidation resistance and mechanism of alloy are also investigated. In the Cu-Ni-Si system, the addition of Ni-Si can enhance the oxidation resistance of the alloy from two aspects: firstly, the Ni-Si is in solid solution state when being added as a cluster, it can inhibit the chemical reactivity of Cu-Ni-Si alloy; secondly, anti-oxidation precipitation can be obtained with the increase of Si/Ni ratio. Therefore, the oxidation resistance of the alloy is not because of the formation of the compact silicon oxide film. In the Cu-Ni-Cr system, the oxidation is obviously inhibited at medium temperatures (lower than 800 ℃). But at higher temperatures, the oxidation resistance is relevant to the integrality of chrome oxide layer. The high temperature oxidation resistance is closely related to Cr/Ni ratio, hence an appropriate Cr/Ni ratio is necessary for the good high temperature oxidation resistance. Compared with the third element Cr, the forth element Fe cannot be oxidized first. Therefore, combined addition of Cr and Fe can only inhibit the medium temperature oxidation, but not high temperature oxidation.

Publisher

Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences

Subject

General Physics and Astronomy

Reference30 articles.

1. Wang Q, Ma M Z, Jing Q, Li G, Qi L, Zhang X Y, Wang W K, Liu R P 2008 Chin. Phys. Lett. 25 3808

2. 《Engineering Materials Practical Handbook》Editorial Board 2002 Engineering Materials Practical Handbook (Version 2) (Beijing: Higher Education Press) (in Chinese) pp452–465 [《工程材料实用手册》 编辑委员会 2002 工程材料实用手册 (第2版) (北京: 中国标准出版社) 第452–465页]

3. Bergmann W 1989 Werkstofftechnik (Vol. 1) (Munich: Hanser) p246, Vol. 2 p511

4. Kohlrausch F 1968 Praktische Physik (Vol. 3) (Stuttgart: Teubner) p84

5. Pan Q H 1996 The Chinese Journal of Nonferrous Metals 6 91 (in Chinese) [潘奇汉 1996 中国有色金属学报 6 91]

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