Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7970145 | Materials Characterization | 2015 | 7 Pages |
Abstract
Tensile properties and deformation microstructures of a series of binary β Ti-16-22V alloys have been investigated. The results show that the plastic deformation mode changes from the plate-like stress-induced Ï phase transformation with a special habit plane of {â 5052}Ï//{3 â 3 â 2}β to {332}<113> type deformation twinning with increasing the content of vanadium in the β Ti-16-22 wt.% V alloys. The plate-like stress-induced Ï phase has a special orientation relationship with the β phase matrix, i.e., [110]β//[â 12 â 10]Ï, (3 â 3 â 2)β//(â 5052)Ï and (â 55 â 4)β//(30 â 31)Ï. The alloys plastically deformed by stress-induced Ï phase transformation exhibit relatively higher yield strength than those deformed via {332}<113> type deformation twinning. It can be concluded that the stability of β phase plays a significant role in plastic deformation mode, i.e., stress-induced Ï phase transformation or {332}<113> type deformation twinning, which governs the mechanical property of the β Ti-16-22 wt.% V alloys.
Related Topics
Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
X.L. Wang, L. Li, W. Mei, W.L. Wang, J. Sun,