Effect of Low angle Grain Boundary on the Microstructure and Mechanical Properties in a Fourth Generation Nickel Based Single Crystal Superalloy

Qiang Wang, Wenchao Yang, Jun Zhang, Lin Liu

科研成果: 会议稿件论文同行评审

摘要

The effect of different low angle grain boundaries (LAGBs) on the microstructure and mechanical properties in a fourth generation Nickel-based single crystal superalloy was studied. Double seed crystals techniques were used to obtain the specimens with LAGBs. After thermal exposure at 1100 °C for 100 h, the microstructure stability deteriorated when the angle exceeded 12.6°, where the discontinuous precipitation (DP) colonies region occurred along the grain boundary because of high interfacial energy and mobility at LAGBs. With the grain boundary angle increasing, the ultimate tensile strength of the sample rose slightly and then fell, while the elongation and creep rupture life decreased significantly exceeded 4.9°. Under 1100 °C service condition, the carbides and topological close-packed (TCP) phases were precipitated at LAGBs, which seriously impaired the grain boundary bonding strength. On the other hand, the misorientation at LAGBs led to the stress concentration, which increased the difficulty of grain boundary coordinated deformation. Finally, the damage tolerance of the LAGBs in this fourth generation Nickel-based single crystal superalloy was approximately estimated as about 7° at 1100 °C/150 MPa creep rupture condition based on a 70% creep rupture life standard.

源语言英语
371-372
页数2
出版状态已出版 - 2024
活动75th World Foundry Congress, WFC 2024 - Deyang, 中国
期限: 25 10月 202430 10月 2024

会议

会议75th World Foundry Congress, WFC 2024
国家/地区中国
Deyang
时期25/10/2430/10/24

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