|
 |
The aging behavior and microstructural changes of Ti–10Mo–7Al alloy at 250°C were investigated. The α”Mq phase generated by quenching and the α”Md phase induced by deformation underwent β-reverse transformation during short aging at 250°C. However, continued aging at 250°C led to the formation of α”iso within 3 min. When a U-shaped bent specimen was aged at 250°C, shape recovery occurred, followed by shape change in the bending direction. Additionally, large undulations appeared even on the undeformed, mirror-finished specimen surface after aging at 250°C. These phenomena indicate that the β reverse transformation at 250°C is metastable and temporary. In the material aged at 250°C for 19.4 Ms, single-crystal regions several hundred microns in size formed, consisting of a single α”iso variant. The formation of this microstructure suggests that compositional distribution of solute atoms is unnecessary for α”iso formation in this alloy. After additional aging at 600°C, the α”iso single-crystal region transformed into a lamellar structure of a single α variant and β phase with a Burgers orientation relationship, indicating the onset of molybdenum compositional distribution. The elongation direction of the lamella coincided with the lattice invariant line direction of the α and β phases, satisfying the Burgers orientation relationship.
Research papers (academic journals)