Role of microstructure on twin nucleation and growth in HCP titanium: A statistical study
- Los Alamos National Lab. (LANL), Los Alamos, NM (United States)
- AGH University of Science and Technology (Poland)
In this study, a detailed statistical analysis is performed using Electron Back Scatter Diffraction (EBSD) to establish the effect of microstructure on twin nucleation and growth in deformed commercial purity hexagonal close packed (HCP) titanium. Rolled titanium samples are compressed along rolling, transverse and normal directions to establish statistical correlations for {10–12}, {11–21}, and {11–22} twins. A recently developed automated EBSD-twinning analysis software is employed for the statistical analysis. Finally, the analysis provides the following key findings: (I) grain size and strain dependence is different for twin nucleation and growth; (II) twinning statistics can be generalized for the HCP metals magnesium, zirconium and titanium; and (III) complex microstructure, where grain shape and size distribution is heterogeneous, requires multi-point statistical correlations.
- Research Organization:
- Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)
- Sponsoring Organization:
- USDOE Office of Science (SC). Basic Energy Sciences (BES) (SC-22); USDOE
- Grant/Contract Number:
- AC52-06NA25396; FWP-06SCPE401
- OSTI ID:
- 1427380
- Alternate ID(s):
- OSTI ID: 1548768
- Report Number(s):
- LA-UR-17-29637
- Journal Information:
- Acta Materialia, Vol. 148, Issue C; ISSN 1359-6454
- Publisher:
- ElsevierCopyright Statement
- Country of Publication:
- United States
- Language:
- English
Web of Science
Simultaneous Improvement in the Strength and Formability of Commercially Pure Titanium via Twinning-induced Crystallographic Texture Control
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journal | February 2019 |
Simultaneous Improvement in the Strength and Formability of Commercially Pure Titanium via Twinning-induced Crystallographic Texture Control
|
journal | February 2019 |
Characterizing the role of adjoining twins at grain boundaries in hexagonal close packed materials
|
journal | March 2019 |
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