材料科学
金属间化合物
合金
退火(玻璃)
灰烬
热力学
成核
层错能
焓
羊奶
冶金
相图
相(物质)
固溶体
扩散
动力学
奥氏体
铝化物
分析化学(期刊)
结晶学
微观结构
热扩散率
共晶体系
作者
N. K. Chaitanya,Tamanna Harihar Panigrahi,J. Chandana,K. Guruvidyathri,Joydip Joardar,P. P. Bhattacharjee,M. Vaidya
标识
DOI:10.1002/adem.202501921
摘要
This study examined the nucleation and kinetics of phases progressed during the interdiffusion couple annealing of an extremely low stacking fault energy (SFE) Cr 26 Co 20 Fe 20 Mn 20 Ni 14 high‐entropy alloy (HEA) interfaced with pure Al at 600°C, up to 240 h. Microstructural analysis revealed two primary phases (indicated as P1 and P3) at all annealing intervals and region P2, which was a mixture of P1 and P3. The characterizations confirmed the phases P1 and P3 to be Al 9 (Co, Cr, Ni, Mn, Fe) 2 and Al 5 (Co, Cr, Ni, Mn, Fe) 2 , respectively. A transition zone with segregated phases P4 (Co, Ni‐rich) and P5 (Cr, Fe, Mn‐rich) was observed close to the HEA interface. Thermodynamic phase formation tendencies were further validated through CALPHAD (Calculation of Phase Diagram)‐analyses. Phase growth across the interdiffusion zone attains parabolic law with a rate constant ( K p ) of 1.35 × 10 −14 m 2 /s. The results indicated that the formation of intermetallic phases was primarily driven by enthalpy considerations. However, the existence of multiple elements in the sublattices delineated that entropy stabilization also played a significant role in the phase formation.
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