Unveiling the Re segregation at γ/γ′ interface in Ni-based Superalloy

Jiachen Zhang, Tai-wen Huang, Fan Lu, Kaili Cao, Dong Wang, J. Zhang, Jun Zhang, H. Su, Lin Liu
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引用次数: 12

Abstract

The distribution of Rhenium (Re) in a Ni-based single crystal superalloy is characterized and specified by atom probe tomography (APT) after different heat treatment (including long-term aging). At high temperatures (950-1100°C), the actual effective diffusion providing γ΄ coarsening is becoming much bigger than Re diffusion in γ matrix, consequently Re atoms are insufficient to diffuse away and keep accumulating, leading to forming segregation at γ/γ′ interface. While at low temperatures (800-900°C), the Re diffusion is capable to balance the effective diffusion for γ΄ coarsening. After introducing more alloys with different Re content and different aging temperatures, Re segregation is irrelevant to the Re content but highly temperature-dependent. These results provide a novel perspective on the comprehension of the Re effect on the γ΄ coarsening in Ni-based superalloy and will be valuable to both improving the γ/γ′ microstructure stability and designing high-performance superalloys.
揭示ni基高温合金中γ/γ′界面处的Re偏析
采用原子探针层析成像(APT)研究了不同热处理(包括长期时效)后镍基单晶高温合金中铼(Re)的分布。高温下(950 ~ 1100℃),Re在γ基体中的实际有效扩散大于γ +粗化,导致Re原子不能充分扩散并不断积累,在γ/γ′界面处形成偏析。而在低温(800 ~ 900℃)下,Re扩散能够平衡γ΄粗化的有效扩散。在引入更多不同稀土含量和不同时效温度的合金后,稀土偏析与稀土含量无关,而是高度依赖于温度。这些结果为理解Re对ni基高温合金γ′粗化的影响提供了新的视角,对提高ni基高温合金γ/γ′组织稳定性和设计高性能高温合金具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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