Journal of the Chinese Ceramic Society, Volume. 52, Issue 12, 3815(2024)
Corrosion Resistance of Alumina Zirconia Prestressed Ceramics to Calcium Magnesium Aluminosilicate
[1] [1] CLARKE D R, OECHSNER M, PADTURE N P. Thermal-barrier coatings for more efficient gas-turbine engines[J]. Mrs Bull, 2012, 37(10): 891-898.
[2] [2] TAHERI M, MAZAHERI M, GOLESTANI-FARD F, et al. High/room temperature mechanical properties of 3Y-TZP/CNTs composites[J]. Ceram Int, 2014, 40(2): 3347-3352.
[3] [3] KILIC M, OZKAN D, GOK M S, et al. Room-and high temperature wear resistance of MCrAlY coatings deposited by detonation gun (D-gun) and supersonic plasma spraying (SSPS) techniques[J]. Coatings, 2020, 10(11): 1107.
[4] [4] YU T Y, ZHANG Z Y, LIU Q Y, et al. Extrusion-based additive manufacturing of yttria-partially-stabilized zirconia ceramics[J]. Ceram Int, 2020, 46(4): 5020-5027.
[5] [5] ZENG S, ZHU D B, ZHANG X X, et al. Enhanced thermal shock resistance of zirconia ceramics with multi-component rare earth and tourmaline addition[J]. Ceram Int, 2023, 49(11): 18689-18698.
[7] [7] BOROM M P, JOHNSON C A, PELUSO L A. Role of environment deposits and operating surface temperature in spallation of air plasma sprayed thermal barrier coatings[J]. Surf Coat Tech, 1996, 86: 116-126.
[8] [8] STOTT F H, DE WET D J, TAYLOR R. The degradation resistance of thermal barrier coatings to molten deposits at very high temperatures[M]//T. MSUMOTO ed. Advanced Materials '93. Oxford: Elsevier, 1994: 135-140.
[9] [9] ZALESKI E M, ENSSLEN C, LEVI C G. Melting and crystallization of silicate systems relevant to thermal barrier coating damage[J]. J Am Ceram Soc, 2015, 98(5): 1642-1649.
[10] [10] KRAUSE A R, GARCES H F, DWIVEDI G, et al. Calcia-magnesia-alumino-silicate (CMAS)-induced degradation and failure of air plasma sprayed yttria-stabilized zirconia thermal barrier coatings[J]. Acta Mater, 2016, 105: 355-366.
[12] [12] CHENG H C, WANG Y L, LIU H F, et al. Phase and structural evolution of dysprosia stabilized zirconia ceramics under CMAS corrosion environment[J]. Ceram Int, 2023, 49(23): 38237-38246.
[15] [15] GUO L, YAN Z, WANG X H, et al. Ti2AlC MAX phase for resistance against CMAS attack to thermal barrier coatings[J]. Ceram Int, 2019, 45(6): 7627-7634.
[16] [16] YAN Z, GUO L, LI Z H, et al. Effects of laser glazing on CMAS corrosion behavior of Y2O3 stabilized ZrO2 thermal barrier coatings[J]. Corros Sci, 2019, 157: 450-461.
[17] [17] GHASEMI R, VAKILIFARD H. Plasma-sprayed nanostructured YSZ thermal barrier coatings: Thermal insulation capability and adhesion strength[J]. Ceram Int, 2017, 43(12): 8556-8563.
[18] [18] FANG H J, WANG W Z, HUANG J B, et al. Corrosion behavior and thermos-physical properties of a promising Yb2O3 and Y2O3 co-stabilized ZrO2 ceramic for thermal barrier coatings subject to calcium-magnesium-aluminum-silicate (CMAS) deposition: Experiments and first-principles calculation[J]. Corros Sci, 2021, 182: 109230.
[19] [19] WANG T X, SHAO F, NI J X, et al. Calcium-magnesium-aluminum-silicate (CMAS) corrosion resistance of Y-Yb-Gd-stabilized zirconia thermal barrier coatings[J]. J Therm Spray Techn, 2021, 30: 442-456.
[20] [20] LI B W, SUN J Y, GUO L. CMAS corrosion behavior of Sc doped Gd2Zr2O7/YSZ thermal barrier coatings and their corrosion resistance mechanisms[J]. Corros Sci, 2021, 193: 109899.
[21] [21] ARSHAD A, YAJID M A M, DAROONPARVAR M, et al. Effect of laser-glazed treatment on thermal cyclic behavior of plasma-sprayed lanthanum zirconate/yttria-stabilized zirconia double ceramic layered on NiCoCrAlYTa-coated inconel[J]. J Therm Spray Techn, 2023, 32(8): 2603-2619.
[22] [22] SHI T J, BAI B T, PENG H R, et al. Improved thermal shock resistance of GYYZO-YSZ double ceramic layer TBCs induced by induction plasma spheroidization[J]. Surf Coat Tech, 2024, 477: 130372.
[23] [23] BAO Y W, SUN Y, KUANG F H, et al. Development and prospects of high strength pre-stressed ceramics[J]. J Inorg Mater, 2020, 35(4): 399-408.
[24] [24] BAO Y W, KUANG F H, SUN Y, et al. A simple way to make pre-stressed ceramics with high strength[J]. J Materiomics, 2019, 5(4): 657-662.
[26] [26] ZHANG X F, ZHOU K S, LIU M, et al. Adsorbability and spreadability of calcium-magnesium-alumino-silicate (CMAS) on Al-modified 7YSZ thermal barrier coating[J]. Ceram Int, 2016, 42(16): 19349-19356.
[27] [27] QU W W, LI S S, CHEN Z H, et al. Hot corrosion behavior and wettability of calcium-magnesium-alumina-silicate (CMAS) on LaTi2Al9O19 ceramic[J]. Corros Sci, 2020, 162: 108199.
[28] [28] SHUAI W W, DOU H J, GUAN Z C, et al. Preparation and characterization of La-doped Y3Al5O12 as a potential protective coating material against CMAS corrosion[J]. Surf Coat Tech, 2024, 476: 130188.
[29] [29] SHAN X, CHEN W F, YANG L X, et al. Pore filling behavior of air plasma spray thermal barrier coatings under CMAS attack[J]. Corros Sci, 2020, 167: 108478.
[30] [30] NIETO A, AGRAWAL R, BRAVO L, et al. Calcia-magnesia-alumina-silicate (CMAS) attack mechanisms and roadmap towards Sandphobic thermal and environmental barrier coatings[J]. Int Mater Rev, 2021, 66(7): 451-492.
[31] [31] Technical Committee ISO/TC 206-Fine ceramics. ISO 20343:2017 Fine ceramics (advanced ceramics, advanced technical ceramics)-Test method for determining elastic modulus of thick ceramic coatings at elevated temperature[S]. Geneva, Switzerland, 2017.
[32] [32] Technical Committee ISO/TC 206-Fine ceramics. ISO 23458:2020 Fine ceramics (advanced ceramics, advanced technical ceramics)-Test method for determining thermal expansion coefficient and residual stress of CVD ceramic coatings[S]. Geneva, Switzerland, 2020.
[33] [33] WU H L, LI H Y, CAO D K, et al. The Ef,ramics[J]. Materials, 2023, 16(17): 6071.
[34] [34] SHAN X, CAI H Y, LUO L R, et al. Influence of pore characteristics of air plasma sprayed thermal barrier coatings on calcia-magnesia-alumino-silicate (CMAS) attack behavior[J]. Corros Sci, 2021, 190: 109636.
Get Citation
Copy Citation Text
ZHANG Xuyang, WANG Xiufang, WAN Detian, LI Haiyan, BAO Yiwang, JIA Zhijie, MA Huachao. Corrosion Resistance of Alumina Zirconia Prestressed Ceramics to Calcium Magnesium Aluminosilicate[J]. Journal of the Chinese Ceramic Society, 2024, 52(12): 3815
Category:
Received: May. 30, 2024
Accepted: Jan. 2, 2025
Published Online: Jan. 2, 2025
The Author Email: Xiufang WANG (wangxiufang@bucea.edu.cn)