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SAE technical paper series, Volume 940054.
Ti3Al (α2) and TiAl (gamma) are of technological importance to aerospace-type applications due to their attractive high temperature properties. Plasma spraying... 
Titanium alloys | Manufacturing processes | Coatings, colorants, and finishes
eJournal
2011, ISBN 9783527315253, 763
The first book entirely dedicated to the topic emphasizes the relation between basic research and actual processing technologies. As such, it covers complex... 
Titanium alloys | Titanium-aluminum alloys
eBook
Progress in Aerospace Sciences, ISSN 0376-0421, 11/2012, Volume 55, pp. 1 - 16
Journal Article
Materials at High Temperatures: High Temperature Materials for Aerospace Applications, ISSN 0960-3409, 06/2016, Volume 33, Issue 4-5, pp. 560 - 570
After more than 30 years of fundamental research and development activities intermetallic titanium aluminides based on the ordered γ-TiAl phase have found... 
Intermetallics | Titanium aluminides | Alloy development | Applications | Properties | Processing | GAMMA | DESIGN | CREEP-PROPERTIES | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | SHEET | MECHANICAL-PROPERTIES | DEFORMATION | HIGH NB | BETA-PHASE | TIAL-BASED ALLOYS
Journal Article
Intermetallics, ISSN 0966-9795, 03/2018, Volume 94, pp. 29 - 37
In order to understand the role of α2-Ti3Al precipitates during the oxidation of Au-coated γ-48-2-2-TiAl alloys, the γ-TiAl and α2-Ti3Al microstructures... 
C. Coatings | B. Oxidation | A. Intermetallics (aluminides) | PHASE | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | Intermetallics (aluminides) | CHEMISTRY, PHYSICAL | HOT-CORROSION BEHAVIOR | Oxidation | SHAPE-MEMORY ALLOY | Coatings | TITANIUM ALUMINIDES | Engineering Sciences | Materials
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 01/2017, Volume 239, pp. 230 - 239
This study explores the capabilities of methods for in-situ synthesis of titanium aluminides using the Direct Metal Deposition process. This allows for the... 
Functional grading | Titanium aluminides | Additive manufacturing | Deposition | Laser | MATERIALS SCIENCE, MULTIDISCIPLINARY | MECHANICAL-PROPERTIES | INTERMETALLIC ALLOYS | DIFFUSION | ENGINEERING, MANUFACTURING | LAYER | ENGINEERING, INDUSTRIAL | TIAL ALLOY | MICROSTRUCTURE | STRUCTURAL-MATERIALS | Powders | Intermetallic compounds | Analysis | Alloys | Innovations | Titanium | 3D printing
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 05/2016, Volume 665, pp. 135 - 140
High temperature nanoindentation was conducted on a Ti‐44.5Al‐6.25Nb‐0.8Mo‐0.1B (in at.%) alloy from room temperature up to 600°C to determine the temperature... 
Intermetallics | Electron microscopy | Nanoindentation | Dislocations | Mechanical properties | Intermetallic compounds | Hardness | Analysis | Alloys | Aluminides | Phases | Multiphase | Titanium compounds | Titanium base alloys
Journal Article
International Journal of Fatigue, ISSN 0142-1123, 08/2013, Volume 53, pp. 26 - 32
Journal Article
Intermetallics, ISSN 0966-9795, 12/2018, Volume 103, pp. 12 - 22
Plenty of papers with regard to the processing of TiAl alloys via investment casting, forging, rolling, extrusion pressing as well as mechanical machining have... 
Aluminides | Intermetallics | Casting | Aero-engine components | Microstructure | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CHEMISTRY, PHYSICAL | Titanium alloys | Founding | Intermetallic compounds | Production processes
Journal Article
Journal Article