PPB structure elimination, DRX nucleation mechanisms and grain growth behavior of the 3rd-generation PM superalloy for manufacturing aviation components

IF 5.3 1区 工程技术 Q1 ENGINEERING, AEROSPACE
Baoyun ZHANG , Yongquan NING , Zhaotian WANG , Qiaomu LIU
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Abstract

Previous Particle Boundary (PPB), as the detrimental structure in Powder Metallurgy (PM) components, should be eliminated by subsequent hot process to improve the mechanical properties. The objective is to investigate the Dynamic Recrystallization (DRX) nucleation mechanisms and grain growth behavior of the 3rd-generation PM superalloy with PPB structure. Microstructure observation reveals that PPB decorated with (Ti, Ta, Nb)C carbides belongs to the discontinuous chain-like structure. The elimination of PPB networks can be achieved effectively via hot deformation due to the occurrence of DRX. Four different DRX nucleation mechanisms were proposed and discussed in detail according to the special microstructure characteristics of the PM superalloy. Firstly, local lattice rotations can be detected in the vicinity of (Ti, Ta, Nb)C carbides during hot deformation and thus PPB structure serves as the preferential nucleation sites for DRX grains via Particle-Stimulated Nucleation (PSN). Then, Discontinuous-DRX (DDRX) characterized by grain boundary bulging dominates the microstructure refinement and Continuous-DRX (CDRX) operated by subgrain rotation can be regarded as an important assistant mechanism. At last, the initial Σ3 boundaries would lose their twin characteristics owing to the crystal rotation and then transform into the general High Angle Grain Boundaries (HAGBs). The distorted twins provide additional DRX nucleation sites, viz., twin-assisted nucleation. Particular attention was focused on the grain growth behavior of the PM superalloy in subsequent annealing process. The recrystallization temperature was determined to be about 1110 °C and 1140 °C can be considered as the critical temperature for grain growth. The findings would provide theoretical support for microstructure refinement of the 3rd-generation PM superalloy, which is of pivotal significance for improving the mechanical properties of aviation components.

Abstract Image

用于制造航空部件的第三代 PM 超合金的 PPB 结构消除、DRX 成核机制和晶粒生长行为
上一颗粒边界(PPB)是粉末冶金(PM)部件中的有害结构,应通过后续热加工工艺予以消除,以改善其机械性能。本文旨在研究具有 PPB 结构的第三代粉末超合金的动态再结晶(DRX)成核机制和晶粒生长行为。显微结构观察表明,装饰有(Ti、Ta、Nb)C 碳化物的 PPB 属于不连续链状结构。由于 DRX 的出现,通过热变形可以有效消除 PPB 网络。根据永磁超合金的特殊微观结构特征,提出并详细讨论了四种不同的 DRX 成核机制。首先,在热变形过程中,可以在(Ti、Ta、Nb)C 碳化物附近检测到局部晶格旋转,因此 PPB 结构通过粒子刺激成核(PSN)成为 DRX 晶粒的优先成核点。然后,以晶界凸起为特征的非连续-DRX(DDRX)主导了微观结构的细化,而以亚晶粒旋转为特征的连续-DRX(CDRX)可被视为一种重要的辅助机制。最后,最初的Σ3 晶界会因晶体旋转而失去其孪晶特征,进而转变为一般的高角度晶界(HAGBs)。扭曲的孪晶提供了额外的 DRX 成核点,即孪晶辅助成核。我们特别关注了 PM 超合金在后续退火过程中的晶粒生长行为。经测定,再结晶温度约为 1110 °C,而 1140 °C可视为晶粒生长的临界温度。这些发现为第三代永磁超合金的微观结构细化提供了理论支持,对提高航空部件的机械性能具有重要意义。
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来源期刊
Chinese Journal of Aeronautics
Chinese Journal of Aeronautics 工程技术-工程:宇航
CiteScore
10.00
自引率
17.50%
发文量
3080
审稿时长
55 days
期刊介绍: Chinese Journal of Aeronautics (CJA) is an open access, peer-reviewed international journal covering all aspects of aerospace engineering. The Journal reports the scientific and technological achievements and frontiers in aeronautic engineering and astronautic engineering, in both theory and practice, such as theoretical research articles, experiment ones, research notes, comprehensive reviews, technological briefs and other reports on the latest developments and everything related to the fields of aeronautics and astronautics, as well as those ground equipment concerned.
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