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A short review on the phase structures, oxidation kinetics, and mechanical properties of complex Ti-Al alloys
Journal article   Open access   Peer reviewed

A short review on the phase structures, oxidation kinetics, and mechanical properties of complex Ti-Al alloys

H.P. Lim, W.Y.H. Liew, G.J.H. Melvin and Z.-T. Jiang
Materials, Vol.14(7), Article 1677
2021
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Abstract

This paper reviews the phase structures and oxidation kinetics of complex Ti-Al alloys at oxidation temperatures in the range of 600–1000 °C. The mass gain and parabolic rate constants of the alloys under isothermal exposure at 100 h (or equivalent to cyclic exposure for 300 cycles) is compared. Of the alloying elements investigated, Si appeared to be the most effective in improving the oxidation resistance of Ti-Al alloys at high temperatures. The effect of alloying elements on the mechanical properties of Ti-Al alloys is also discussed. Significant improvement of the mechanical properties of Ti-Al alloys by element additions has been observed through the formation of new phases, grain refinement, and solid solution strengthening.

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
7 Engineering & Materials Science
7.12 Metallurgical Engineering
7.12.665 Titanium Aluminides
Web Of Science research areas
Chemistry, Physical
Materials Science, Multidisciplinary
Metallurgy & Metallurgical Engineering
Physics, Applied
Physics, Condensed Matter
ESI research areas
Materials Science
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