Abstract
Carbon (C) regulation is an effective strategy for optimizing grain boundary precipitates and enhancing mechanical properties in superalloys. In this work, IN718 alloys with different C contents were fabricated using modified thermally controlled solidification to systematically investigate the influence of C on microstructural evolution and creep properties. The results demonstrate that increasing C content refines the grain size to approximately 78 μm, with porosity remaining under 0.62% and no dendritic structures observed. Microstructural analysis reveals that as C content increases, the volume fraction of MC carbides increases from 0.7% to 1.3%, and their morphology evolves from blocky to skeletal or coarse blocky forms, while Laves phases are significantly reduced. Concurrently, δ phases transform from acicular to granular morphology with volume fraction decreasing from 12.2% to 1.7%, and γ" phase volume fraction also decreases substantially from 31.9% to 24.7%. Additionally, with increasing C content, the creep life of the alloys exhibits a trend of initially decreasing from 404.9 h to 86.8 h and then increasing to 328.9 h, while the steady-state creep rate shows the opposite trend. The creep lives at 0.036 and 0.12 wt% C are 4.7 and 3.8 times that at 0.096 wt% C, respectively.
| Original language | English |
|---|---|
| Pages (from-to) | 908-916 |
| Number of pages | 9 |
| Journal | Journal of Materials Research and Technology |
| Volume | 43 |
| DOIs | |
| State | Published - 1 Jul 2026 |
Keywords
- C content
- Creep properties
- IN718 superalloy
- Microstructural evolution
- Modified thermally controlled solidification
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