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Exceptional creep resistance of a directionally solidified superalloy: temperature-dependent evolution of microstructure and dislocations

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Taylor & Francis Group2025-08-12 更新2026-04-16 收录
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https://tandf.figshare.com/articles/dataset/Exceptional_creep_resistance_of_a_directionally_solidified_superalloy_temperature-dependent_evolution_of_microstructure_and_dislocations/29329652/1
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资源简介:
This study systematically analyzed the microstructure, grain boundary, and dislocation evolution of a novel directionally solidified superalloy with excellent creep resistance under different conditions and the alloy outperformed first-generation single-crystal superalloys in creep resistance. Experimental results revealed that higher temperatures inhibited the broadening of grain boundary serrations while reducing the degree of topological inversion and delaying the widening of γ channels. Dislocation behavior analysis showed that lower temperature promoted the formation of a superdislocation network, which effectively pinned the motion of superdislocations, reducing the creep rate during the secondary creep stage and delaying the transition to tertiary creep. This study developed a first-generation directionally solidified superalloy exhibiting superior creep resistance compared to first-generation single-crystal superalloy, while elucidating its underlying strengthening mechanisms.
提供机构:
Cheng, Yuan; Fan, Yunpeng; Xia, Wanshun; Gu, Yuefeng; Zhang, Ze; Zhou, Yu; Zhao, Xinbao; Yue, Quanzhao; Zeng, Shuli
创建时间:
2025-06-16
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