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钌对镍-铝-钌合金中γ'相析出过程的影响

The Effect of Ru on the Evolution of the γ' Phase in Ni-Al-Ru Alloys.

作者信息

Wang Shaoyang, Meng Fanqiang, Wang Lu, Yu Hongying, Sun Dongbai

机构信息

School of Materials, Sun Yat-sen University, Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Guangzhou 510275, China.

Sino-French Institute of Nuclear Engineering and Technology, Sun Yat-sen University, Zhuhai 519082, China.

出版信息

Materials (Basel). 2022 May 6;15(9):3344. doi: 10.3390/ma15093344.

Abstract

With the development and wide application of nickel-based single-crystal superalloys, the effect of Ru on the microstructure stability and high-temperature properties of superalloys is becoming increasingly important. In this study, the effect of Ru on the evolution of the γ' phase in Ni-Al-Ru ternary alloys during aging treatment was analyzed, using a scanning electron microscope and transmission electron microscope, combined with energy-dispersive spectroscopy. The relationship between chemical partition behavior and γ/γ' lattice misfit was investigated in detail. During the aging process, Ru addition suppressed the growth rate and rafting process of γ' precipitates, while the effect of Ru on hindering γ' phase growth was reduced when the Ru content was over 3 at%. Ru preferentially partitioned to the γ phase, and its partitioning ratio to the γ phase increased with a variation in Ru content from 1 at% to 3 at% and decreased for the NiAl6Ru alloy. Additionally, the lattice misfit of all alloys was positive and reduced with the increase in Ru content, which hindered the Ru atoms to diffuse into the γ phase and promoted the shape of γ' precipitates to change from cubic to spherical.

摘要

随着镍基单晶高温合金的发展和广泛应用,钌对高温合金微观结构稳定性和高温性能的影响变得越来越重要。在本研究中,利用扫描电子显微镜、透射电子显微镜并结合能谱分析,分析了钌对Ni-Al-Ru三元合金时效处理过程中γ'相析出行为的影响。详细研究了化学分配行为与γ/γ'晶格错配之间的关系。时效过程中,添加钌抑制了γ'相析出物的生长速率和筏化过程,当钌含量超过3at%时,钌对γ'相生长的阻碍作用减弱。钌优先分配到γ相中,其在γ相中的分配比随着钌含量从1at%变化到3at%而增加,而在NiAl6Ru合金中降低。此外,所有合金的晶格错配均为正值,且随着钌含量的增加而减小,这阻碍了钌原子扩散到γ相中,并促使γ'相析出物的形状从立方体形变为球形。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/667d/9104606/0e68efd23aaa/materials-15-03344-g001.jpg

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