摘要
A novel metastable β-Ti alloy based on Ti–Al–Zr–Mo–Cr system was successfully designed and fabricated. Superior combination of high strength (UTS = 1534-1198 MPa) and ductility (El = 7.0%–20.9%) is achieved in this alloy. After high reduction β transus forging and subsequent heat treatment, a multi-scale distribution of α phase is displayed which contains micro-scale elongated primary α (αp), sub-micro α rod (αr) and nano-sized α platelets (αs). Detailed selected area electron diffraction (SAED) pattern and high resolution-TEM analysis show the production of FCC substructure inside αp and αr with an orientation relationship of <0001>hcp//<001>fcc, {112‾0}hcp//{2‾20}fcc, {101‾0}hcp//{220}fcc. Two variants of FCC lamella are discovered which is related by a 120° rotation around <001> axis. The effect of microstructure on the improved strength-ductility combination is briefly discussed. Both FCC lamella and multi-scale distribution of α phase could create an effective strain partition during plastic deformation and increase the ductility. High strength originates from the distribution of high fraction nano-scaled αs which could effectively hinder dislocation slip in β matrix.
| 源语言 | 英语 |
|---|---|
| 期刊论文编号 | 138611 |
| 期刊 | Materials Science and Engineering: A |
| 卷 | 771 |
| DOI | |
| 出版状态 | 已出版 - 13 1月 2020 |
学术指纹
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