Journal of Inorganic Materials ›› 2017, Vol. 32 ›› Issue (12): 1269-1274.DOI: 10.15541/jim20170101
• Orginal Article • Previous Articles Next Articles
SUN Xu-Xuan, CHEN Hong-Fei, YANG Guang, LIU Bin, GAO Yan-Feng
Received:
2017-03-02
Revised:
2017-04-16
Published:
2017-12-20
Online:
2017-11-21
CLC Number:
SUN Xu-Xuan, CHEN Hong-Fei, YANG Guang, LIU Bin, GAO Yan-Feng. YSZ- Ti3AlC2 Thermal Barrier Coating and Its Self-healing Behavior under High Temperatures[J]. Journal of Inorganic Materials, 2017, 32(12): 1269-1274.
Parameter | Current/A | Ar/NLPM | H2/ NLPM | Spraying distance/mm | Carrier Ar/NLPM |
---|---|---|---|---|---|
Value | 550 | 50 | 8 | 150 | 3.2 |
Table 1 Parameters of atmospheric plasma spraying
Parameter | Current/A | Ar/NLPM | H2/ NLPM | Spraying distance/mm | Carrier Ar/NLPM |
---|---|---|---|---|---|
Value | 550 | 50 | 8 | 150 | 3.2 |
Fig. 4 SEM images of as-sprayed coating surface(a), coating surface after isothermal treated at 1050℃ for 4 h (b) with enlarged view (c) of square area in Fig. 4 (b)
Spot | Al | Ti | Zr | O |
---|---|---|---|---|
at% | ||||
A | 0 | 5.84 | 27.31 | 66.85 |
B | 4.14 | 9.54 | 24.49 | 61.83 |
C | 10.07 | 16.58 | 14.51 | 58.84 |
D | 13.84 | 18.12 | 6.31 | 61.73 |
E | 2.46 | 30.89 | 4.78 | 61.87 |
F | 0.56 | 34.46 | 0.52 | 64.76 |
Table 2 EDS analysis of the points in Fig. 6
Spot | Al | Ti | Zr | O |
---|---|---|---|---|
at% | ||||
A | 0 | 5.84 | 27.31 | 66.85 |
B | 4.14 | 9.54 | 24.49 | 61.83 |
C | 10.07 | 16.58 | 14.51 | 58.84 |
D | 13.84 | 18.12 | 6.31 | 61.73 |
E | 2.46 | 30.89 | 4.78 | 61.87 |
F | 0.56 | 34.46 | 0.52 | 64.76 |
Fig. 7 (a) Surface morphology of prefabricated crack in YSZ-Ti3AlC2 coating after isothermal treatment at 1050℃ in the air for 4 h and (b) EDS image of self-healing zone in Fig. 7(a)
[1] | SCHULZ U, LEYENS C, FRITSCHER K,et al Some recent trends in research and technology of advanced thermal barrier coatings.Aerospace Sci. Technol., 2003, 7(1): 73-80. |
[2] | PADTURE N P, GELL M, JORDAN E H.Thermal barrier coatings for gas-turbine engine applications.Mater. Sci., 2002, 296(5566): 280-284. |
[3] | EVANS A G, MUMM D R, HUTCHINSON J W,et al Mechanisms controlling the durability of thermal barrier coatings.Prog. Mater. Sci., 2001, 46(5): 505-553. |
[4] | VAND Z S, VANDIJK N H, JONKERS H M,et al Self-healing behaviour in man-made engineering materials: bioinspired but taking into account their intrinsic character.Philos. Trans. R. Soc. A-Math. Phys. Eng. Sci., 2009, 367(1894): 1689-1704. |
[5] | OUYANG T, FANG X, ZHANG Y,et al Enhancement of high temperature oxidation resistance and spallation resistance of SiC-self-healing thermal barrier coatings.Surf. Coat. Technol., 2016, 286: 365-375. |
[6] | MEIJERINK M J.Coating of MoSi2 Healing Particles for Self-healing Thermal Barrier Coatings. Netherlands: Master's thesis in Chemical Engineering and Materials Science and Engineering at the Delft University of Technology, 2015. |
[7] | GAO J, SUO J.Effects of heating temperature and duration on the microstructure and properties of the self-healing coatings.Surf. Coat. Technol., 2011, 206(6): 1342-1350. |
[8] | OUYANG T, WU J, YASIR M,et al. Effect of TiC self-healing coatings on the cyclic oxidation resistance and lifetime of thermal barrier coatings. J. Alloys Compd., 2016, 656: 992-1003. |
[9] | BARSOUM M W, ELRAGHY T.The MAX phases: unique new carbide and nitride materials.Am. Sci., 2001, 89(4): 334-343. |
[10] | LEE D B, PARK S W.High-temperature oxidation of Ti3AlC2 between 1173 and 1473 K in air.Mater. Sci. Eng., A, 2006, 434(1/2): 147-154. |
[11] | SONG G M, PEI Y T, SLOOF W G,et al. Oxidation-induced crack healing in Ti3AlC2 ceramics. Scripta Mater., 2008, 58(1): 13-16. |
[12] | ZHOU Y, SUN Z, WANG X,et al. Ab initio geometry optimization and ground state properties of layered ternary carbides Ti3MC2(M, =, Al, Si and Ge). J. Phys.: Condens. Matter, 2001, 13(44): 10001-10010. |
[13] | LEGZDINA D, ROBERTSON I M, BIRNBAUM H K.Oxidation behavior of a single phase γ-TiAl alloy in low-pressure oxygen and hydrogen.Acta Mater., 2005, 53(3): 601-608. |
[14] | WANG X H, ZHOU Y C.Oxidation behavior of Ti3AlC2 at 1000-1400℃ in air.Corros. Sci., 2003, 45(5): 891-907. |
[15] | SONG G M, PEI Y T, SLOOF W G,et al. Early stages of oxidation of Ti3AlC2 ceramics. Mater. Chem. Phys., 2008, 112(3): 762-768. |
[16] | WANG X H, ZHOU Y C.Stability and selective oxidation of aluminum in nano-laminate Ti3AlC2 upon heating in argon.Chem. Mater., 2003, 15(19): 3716-3720. |
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