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High-Temperature Oxidation Behavior of Ti6242S Ti-based Alloy
- Source :
- Oxidation of Metals, Oxidation of Metals, Springer Verlag, 2021, 96 (3-4), pp.373-384. ⟨10.1007/s11085-021-10073-4⟩
- Publication Year :
- 2021
- Publisher :
- HAL CCSD, 2021.
-
Abstract
- International audience; The aircraft industry is always looking for improved efficiency through higher in-service engine temperatures and lighter structures. Titanium-based alloys are good candidates for such applications because of their high specific strength. However, when exposed to high-temperature oxidizing environments, a large amount of dissolved oxygen can be found in such alloys beneath the growing oxide scale, possibly leading to embrittlement. Consequently, evaluating the oxidation resistance of these alloys is essential. With this aim, long-term oxidation tests were carried out on Ti6242S alloy between 500 and 650 °C to study the effect of temperature, surface preparation and microstructure on oxide scale and oxygen dissolution. While increasing the temperature from 560 to 625 °C led to accelerated oxidation kinetics, surface preparation had no noticeable effect on mass variations and oxygen diffusion profiles. Regarding microstructure, when comparing Ti6242S samples having similar α-phase fraction but very different microstructures (fineness and morphology), there wasn’t any significant effect found on mass change and oxygen diffusion after 1 kh at 650 °C.
- Subjects :
- Materials science
Matériaux
Alloy
Oxide
chemistry.chemical_element
02 engineering and technology
Titanium-based alloy
engineering.material
Oxygen dissolution
Oxygen
[SPI.MAT]Engineering Sciences [physics]/Materials
Inorganic Chemistry
chemistry.chemical_compound
0203 mechanical engineering
Oxidizing agent
Materials Chemistry
Embrittlement
Dissolution
High-temperature oxidation
Metallurgy
Metals and Alloys
technology, industry, and agriculture
021001 nanoscience & nanotechnology
Microstructure
equipment and supplies
020303 mechanical engineering & transports
chemistry
engineering
0210 nano-technology
Titanium
Subjects
Details
- Language :
- English
- ISSN :
- 0030770X and 15734889
- Database :
- OpenAIRE
- Journal :
- Oxidation of Metals, Oxidation of Metals, Springer Verlag, 2021, 96 (3-4), pp.373-384. ⟨10.1007/s11085-021-10073-4⟩
- Accession number :
- edsair.doi.dedup.....90ae5f7569ad57be1ab13a05e269aff3
- Full Text :
- https://doi.org/10.1007/s11085-021-10073-4⟩