Acta Metallurgica Sinica (English Letters) ›› 2024, Vol. 37 ›› Issue (7): 1238-1248.DOI: 10.1007/s40195-024-01694-0

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Theoretical Exploration of Alloying Effects on Stabilities and Mechanical Properties of γʹ Phase in Novel Co-Al-Nb-Base Superalloys

Guan-Cheng Gu1, Zhao-Jing Han1, Ze-Yu Chen1, Zhao-Xuan Li1, Sheng-Bao Xia1, Zheng-Ning Li1, Hua Jin1(), Wei-Wei Xu1(), Xing-Jun Liu2   

  1. 1Shenzhen Research Institute of Xiamen University, School of Aerospace Engineering, Xiamen University, Xiamen 361005, China
    2Institute of Materials Genome and Big Data, Harbin Institute of Technology, Shenzhen 518055, China
  • Received:2023-10-18 Revised:2023-12-27 Accepted:2024-02-20 Online:2024-04-17 Published:2024-04-17
  • Contact: Hua Jin, Wei-Wei Xu

Abstract:

The new developed γ/γʹ Co-Al-Nb-base alloys show great potentials as high-temperature materials. However, finding appropriate compositions to improve performance of alloys still poses a great challenge to the development of Co-Al-Nb-base alloys. Motivated by the lack of alloying effects on fundamental properties of critical γʹ phase, we systematically performed a theoretical investigation on the effect of alloying elements TM (TM: Ti, V, Cr, Zr, Mo, Ta, W, Re, and Ru) on phase stabilities and mechanical properties of L12-type γʹ (Co, Ni)3(Al, Nb). By analyzing the stability of γʹ phase with respect to its competitive B2 and D019 phases, the results shown that Ti, V, and Cr enhance the L12 stability and widen the L12-D019 energy barrier, in which V yields the maximum influence. The analysis of electronic structure indicated that the alternation of valence electrons at fermi level would be the atomic origin for doping TM in γʹ phase. The calculated results of mechanical properties shown that V and Cr are expected to be optimal dopant for enhancing the strength and the ductility of γʹ phase. The addition of Ta is also beneficial for enhancing the strength at the slight expense of ductility of γʹ phase. By drawing the mechanical maps, the preferred composition range for the phases with desired properties is roughly demarcated in theory for the multi-addition of V/Cr and V/Ta in γʹ phase. The findings would be useful for optimizing the performance of novel γ/γʹ Co-Al-Nb-base superalloys.

Key words: Co-Al-Nb-base superalloys, γ/γ? dual-phase, Phase stability, Mechanical properties, First-principle methods