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Influence of Re on the Properties of a NiCoCrAlY Coating Alloy 被引量:6

Influence of Re on the Properties of a NiCoCrAlY Coating Alloy
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摘要 MCrAIY can serve as stand-alone overlay coatings or bond coats in thermal barrier coating systems, and its properties play a vital role in determining the performance of these coating systems. In order to further understand the behavior of MCrAIY coatings, several NiCoCrAIY model alloys with different levels of Re (0.3 wt%, O wt%, and 9 wt%) were investigated. Microstructural observation showed the addition of Re promoted the precipitation of Cr-rich phases, such as α-Cr and σ. The presence of α-Cr lowered the coefficient of thermal expansion (CTE) of the coating alloys, which could reduce the CTE mismatch at the scale-metal interface. The solid solution strengthening effect of Re is responsible for an increase in Rockwell hardness of the coating alloys. But the isothermal oxidation resistance at 1100℃ was deteriorated due to the precipitation of brittle α-Cr phase, a phase of inferior oxidation resistance compared with β-NiAI and γ-Ni. MCrAIY can serve as stand-alone overlay coatings or bond coats in thermal barrier coating systems, and its properties play a vital role in determining the performance of these coating systems. In order to further understand the behavior of MCrAIY coatings, several NiCoCrAIY model alloys with different levels of Re (0.3 wt%, O wt%, and 9 wt%) were investigated. Microstructural observation showed the addition of Re promoted the precipitation of Cr-rich phases, such as α-Cr and σ. The presence of α-Cr lowered the coefficient of thermal expansion (CTE) of the coating alloys, which could reduce the CTE mismatch at the scale-metal interface. The solid solution strengthening effect of Re is responsible for an increase in Rockwell hardness of the coating alloys. But the isothermal oxidation resistance at 1100℃ was deteriorated due to the precipitation of brittle α-Cr phase, a phase of inferior oxidation resistance compared with β-NiAI and γ-Ni.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2011年第5期408-414,共7页 材料科学技术(英文版)
基金 supported by the National Basic Research Program ("973 Program") of China under grant No. 2010CB631200 (2010CB631206) the National Natural Science Foundation of China (NSFC) under grantNos. 50931004, 51071164, U1037601 and 50671102 the opening fund of State Key Laboratory of Nonlinear Mechanics (LNM), Institute of Mechanics, Chinese Academy of Sciences
关键词 NICOCRAIY Phase constitution OXIDATION Thermal expansion behavior HARDNESS NiCoCrAIY Phase constitution Oxidation Thermal expansion behavior Hardness
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