Xingmao Wang, Jianwen Huang, D.X. Li, Jianjun Chen, Yubi Gao, Weixiang Huang, Zhongnan Bi, Jinhui Du, Bin Gan, Linli Zhu, Yutian Ding
Here, we alter the alloying elements of GH4742 superalloy by means of domain-knowledge informed thermodynamic calculation to reduce the stacking fault energy of the γ matrix and enhance the stability of γ’ particles. Increasing Co and Cr concentrations with Mo substitution by W induces the formation of high-density stacking faults and nanotwins, while reducing the coarsening rate of γ’ particles during tensile testing at 760°C and stress-rupture loading at 760°C/480 MPa. Thus, the yield strength, working-hardening capacity, and stress-rupture life are simultaneously improved, achieving the synergic enhancements in strengths-ductility and stress-rupture properties at elevated temperature.