Abstract
The corrosion potential of commercially pure titanium in NaCl solutions is dramatically affected by trace Fe additions, which cause the appearance of submicron pockets of β phase at grain boundary triple points. Furthermore, the low solubility of hydrogen in hexagonal close-packed α-Ti makes titanium alloys prone to subsequent hydride-associated failures due to stress corrosion cracking. We analyzed α-α and α-β sections of the abutting grain boundary of a β pocket in a Grade 2 CP-Ti, and the α-β phase boundary. Fe and H partition to β and segregate at the grain boundary, but no segregation is seen at the α-β phase boundary. In contrast, a significant Ni (>1 at%) accumulation is observed at the α-β phase boundary. We propose that the β-pockets act as hydrogen traps and facilitate the nucleation and growth of hydrides along grain boundaries in CP-Ti.
| Original language | English |
|---|---|
| Article number | 114640 |
| Journal | Scripta Materialia |
| Volume | 213 |
| DOIs | |
| State | Published - May 2022 |
| Externally published | Yes |
Keywords
- Hydrogen embrittlement
- Interphase segregation
- Three-dimensional atom probe (3DAP)
- Titanium alloys
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