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High Temperature Oxidation Behavior of Three Co-20Re-xCr Alloys in 3.04×10-5 Pa Oxygen at 1000 and 1100 ℃ |
Ling WANG1,Junhuai XIANG1,2( ),Honghua ZHANG1,2,Songlin QIN1 |
1. School of Materials and Mechanical & Electrical Engineering, Jiangxi Science and Technology Normal University, Nanchang 330013, China 2. Jiangxi Key Laboratory of Surface Engineering, Jiangxi Science and Technology Normal University, Nanchang 330013, China |
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Abstract The iso-thermal oxidation behavior of Co-20Re-20Cr, Co-20Re-25Cr, and Co-20Re-30Cr alloys in 3.04×10-5 Pa oxygen at 1000 and 1100 ℃ for 24 h was investigated. The three alloys show continuous mass loss due to the evaporation of Re element in the form of ReO3. The mass loss is more obvious at 1100 ℃ for Co-20Re-20Cr and Co-20Re-25Cr alloys. The oxidation kinetics at 1000 and 1100 ℃ of Co-20Re-20Cr and Co-20Re-25Cr obeys parabolic law, while that of Co-20Re-25Cr is irregular. Correspondingly, the scales formed on the three alloys with different Cr content have a stratified structure. The outermost layer is composed of CoO, while the inner layer, which is very thick and porous, is composed of CoCr2O4. However, the very thin innermost layer composed of Cr2O3 is not very continuous and complete, accounting for its limited role for protection. With the increase of Cr content, the oxidation resistance of Co-20Re-xCr alloys is enhanced to a certain extent due to the formation of a Cr2O3 layer with better continuity and integrity. Furthermore, when the Cr content reaches up to 30%, the oxidation resistance of the alloy was improved greatly.
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Received: 30 May 2018
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Fund: Supported by National Natural Science Foundation of China(51701054);Science and Technology Research Program of Jiangxi Provincial Education Department(GJJ160770) |
Corresponding Authors:
Junhuai XIANG
E-mail: xiangjunhuai@163.com
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