Browse > Article
http://dx.doi.org/10.3740/MRSK.2020.30.7.350

Microstructure and Hardness of Titanium Aluminide/Carbide Composite Coatings Prepared by Reactive Spray Method  

Han, Chang-Suk (Dept. of ICT Automotive Engineering, Hoseo University)
Jin, Sung-Yooun (Dept. of ICT Automotive Engineering, Hoseo University)
Publication Information
Korean Journal of Materials Research / v.30, no.7, 2020 , pp. 350-358 More about this Journal
Abstract
A variety of composite powders having different aluminum and carbon contents are prepared using various organic solvents having different amounts of carbon atoms in unit volume as ball milling agents for titanium and aluminum ball milling. The effects of substrate temperature and post-heat treatment on the texture and hardness of the coating are investigated by spraying with this reduced pressure plasma spray. The aluminum part of the composite powder evaporates during spraying, so that the film aluminum content is 30.9 mass%~37.4 mass% and the carbon content is 0.64 mass%~1.69 mass%. The main constituent phase of the coating formed on the water-cooled substrate is a non-planar α2 phase, obtained by supersaturated carbon regardless of the alloy composition. When these films are heat-treated at 1123 K, the main constituent phase becomes γ phase, and fine Ti2AlC precipitates to increase the film hardness. However, when heat treatment is performed at a higher temperature, the hardness is lowered. The main constitutional phase of the coating formed on the preheated substrate is an equilibrium gamma phase, and fine Ti2AlC precipitates. The hardness of this coating is much higher than the hardness of the coating in the sprayed state formed on the water-cooled substrate. When hot pressing is applied to the coating, the porosity decreases but hardness also decreases because Ti2AlC grows. The amount of Ti2AlC in the hot-pressed film is 4.9 vol% to 15.3 vol%, depending on the carbon content of the film.
Keywords
reactive thermal spraying; titanium aluminide; carbide; composite powder; ball milling;
Citations & Related Records
연도 인용수 순위
  • Reference
1 C. Bartuli, T. Valente, F. Cipri, E. Bemporad and M. Tului, J. Thermal Spray Tech., 14, 187 (2005).   DOI
2 S. Matthews, M. Hyland and B. James, J. Thermal Spray Tech., 13, 526 (2004).   DOI
3 M. Manjunatha, R. S. Kulkarni and M. Krishna, Proc. Mater. Sci., 5, 622 (2014).   DOI
4 N. A. Allsop, A. Schonmann, A. Belaidi, H. J. Muffler, B. Mertesacker, W. Bohne, E. Strub, J. Rohrich, M. C. Lux-Steiner and C. H. Fischer, Thin Solid Films, 513, 52 (2006).   DOI
5 Y. Sun, K. Kulkarni, A. K. Sachdev and E. J. Lavernia, Metall. Mater. Trans. A, 45, 2750 (2014).   DOI
6 H. Wang and D. Gu, J. Compos. Mater., 49, 1639 (2015).   DOI
7 Z. Yang, L. Zhang, X. Tian, Y. Liu, P. He and J. Feng, Mater. Charact., 79, 52 (2013).   DOI
8 V. Chawla, D. Holec and P. H. Mayrhofer, Thin Solid Films, 565, 94 (2014).   DOI
9 P. Bhattacharya, P. Bellon, R. S. Averback and S. J. Hales, J. Alloys Compd., 368, 187 (2004).   DOI
10 A. H. Johnstone, Handbook of Chemistry and Physics, 69th Edition,pp. C-105, C-174, C-351 and C-549, CRC Press, Boca Raton, Florida (1988).
11 T. Cegan, M. Cagala, M. Kursa, P. Kawulok, S. Rusz, J. Jurica and J. Vontorova, Mater. Tech., 48, 831 (2014).
12 G. C. Wang, J. Zhang and X. W. Liu, Mater. Sci. Forum, 762, 607 (2013).   DOI
13 M. Hasan, J. Stokes, L. Looney and M. S. J. Hashmi, Surf. Coat. Technol., 202, 4006 (2008).   DOI
14 Y. L. Chen, M. Yan, P. J. Lu, Z. U. Li and C. W. Zeng, Adv. Mater. Res., 690-693, 643 (2013).   DOI
15 S. Rech, A. Surpi, S. Vezzu, A. Patelli, A. Trentin, J. Frodelius, L. Hultman and P. Eklund, Vacuum, 94, 69 (2013).   DOI
16 Z. Feng, P. Ke and A. Wang, J. Mater. Sci. Tech., 31, 1193 (2015).   DOI
17 Robert W. Cahn, Ternary Alloys : A Comprehensive Compendium of Evaluated Constitutional Data and Phase Diagrams, 3th ed. G. Petzow and G. Effenberg, (VCH Verlagsgeselshaft, Weinheim, and VCH Publications New York, NY). pp. 557 (1990).
18 S. R. Kulkarni and A. V. Wu, J. Alloys Compd., 490, 155 (2010).   DOI
19 Y. Lin, R. H. Zee and B. A. Chin, Metall. Trans., 22A, 859 (1991).
20 E. Sadeghi, F. Karimzadeh and M. H. Abbasi, J. Alloys Compd., 576, 317 (2013).   DOI