Jian Yao, Jianjun Wu, Jie Su, Haoyu Wu, Zi Wang, Wenli Wang, Liming Tan, Lan Huang, Feng Liu
In this study, high Ti/Al ratio (2.35) nickel-based superalloys were successfully fabricated using the laser powder bed fusion (LPBF) technique and systematically investigated how varying heat treatment temperatures influence the alloy's microstructure and mechanical properties. The findings indicate that the high Ti/Al ratio alloy possesses promising printability. At a solid solution temperature of 1180 °C and an aging temperature of 830 °C, the alloy demonstrates an optimal balance of strength and plasticity. This is attributed to the highest degree of recrystallization, the absence of harmful phase precipitation, and a uniform distribution of the γ′ phase. Moreover, a solid solution temperature of 1120 °C leads to η phase precipitation, significantly decreasing the alloy's plasticity. This study not only elucidates the mechanism by which heat treatment temperature affects the structural evolution of high Ti/Al ratio nickel-based superalloys but also offers theoretical support and practical guidance for superalloy material design and future applications.