Abstract
Microstructural hierarchies of a fine-grained (∼6μm) Ti-10Mo-8 V-1Fe-3.5Al alloy fabricated by hot working process were investigated in β-phased and (α + β)-phased condition respectively. The β-phased microstructure was characterized by a fraction (∼24%) of recrystallized β-grains distributed randomly in the matrix, including subgrains with abundant substructures and defects. After aging, the consequent precipitation behavior of α featured by heterogeneous and insular areas with coarse α(∼0.9 μm) embedded in the ultrafine α(∼0.13 μm). It was clarified that excellent strength-ductility synergy can be achieved by hierarchical microstructure no matter in β or α + β phased condition, in sharp contrast to their coarse-grained counterparts. The microstructural dependence of mechanical properties was discussed in terms of the strain-hardening rate arising from the formation of dislocation pile-up influenced by a dispersion of precipitates, and by grain size (GS).
| Original language | English |
|---|---|
| Article number | 132690 |
| Journal | Materials Letters |
| Volume | 325 |
| DOIs | |
| State | Published - 15 Oct 2022 |
Keywords
- Microstructure
- Recrystallization
- Strain-hardening
- Strength-ductility
- β-Ti alloy
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