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以2D Cf/SiC为基底材料,采用浆料刷涂工艺制得Ba0.25Sr0.75Al2Si2O8(BSAS)环境障碍涂层,并研究了未涂覆BSAS涂层(Cf/SiC)和涂覆BSAS涂层(Cf/SiC-BSAS)的两种试样的耐水腐蚀性能.结果表明:采用浆料刷涂工艺涂覆,在高纯氩气保护气氛下,经1350℃高温烧结,可在Cf/Sic试样上制得致密且无明显缺陷的BSAS涂层,一次涂覆烧结的厚度约为15μm,三次涂覆烧结涂层的厚度可达50μm;在1250℃、50%H2O-50%O2、常压静态气氛下腐蚀100h后,Cf/SiC试样的重量和抗弯强度均发生明显下降,Cf/SiC-BSAS试样的重量基本不变,强度保持率高达90%以上.

参考文献

[1] 张立同,成来飞,徐永东.新型碳化硅陶瓷基复合材料的研究进展.航空制造技术.2003(1):24-32.
[2] Jacobson S N,Fox S D,Opila J E.High temperature oxidation of ceramic matrix composites.Pure and Applied Chemistry,1998,70(2):493-500.
[3] More L K,Tortorelli F P,Walker R L,et al.High-temperature sta-bility of SiC-based composites in high-water-vapor-pressure envi-ronments.Journal of the American Ceramic Society,2003,86(8):1272-1281.
[4] Eaton E H,Linsey D G,Sun Y E,et al.EBC Protection of SiC/SiC Composites in the Gas Turbine Combustion Environ-ment-Continuing Evaluation and Refurbishment Considerations.Proceeding of ASME TURBOEXPO,2001-GT-0513:1-8.
[5] Lee K N,Miller A R.Development and environmental durability of mullite and mullite/YSZ dual layer coatings for SiC and Si3N4 ceramics.Surface and Coatings Technology,1996,86-87(1):142-148.
[6] Lee K N.Current status of environmental barrier coatings for Si-Based ceramics.Surface and Coatings Technology,2000,133-134:1-7.
[7] 吴雅惠,成来飞,王一光,等(WU Ya-Hui,et al).BaO-AI2O3-SiO2环境隔离涂层的制备与耐腐蚀性能表征.硅酸盐学报(Journal of the Chinese Ceramic Society),2009,37(8):1299-1305.
[8] Lee K N,Fox S D,Bansal P N.Rare earth silicate environmental barrier coatings for SiC/SiC composites and Si3N4 ceramics.Jour-nal of the European Ceramic Society,2005,25(10):1705-1715.
[9] Wang Y G,Liu J L.Corrosion of barium aluminosilicates by water-vapour:an investigation from first principles.Corrosion Science,2009,51(9):2126-2129.
[10] Armstrong L B,Cooley M K,Haynes A J,et al.Slurry Based Environmental Barrier Coating(EBC)Concepts.http://www.ornl.gov/sci/de_materials/documents/ARMSTRONGsluny.pdf.
[11] Matsumoto K,Itoh Y,Kameda T.EB-PVD process and thermal properties of hafnia-based thermal barrier coating.Science and Technology of Advanced Materials,2003,4(2):153-158.
[12] Haynes A J,Lance J M,Cooley M K,et al.CVD mullite coatings in high-temperature,high-pressure Air-H2O.Journal of the American Ceramic Society,2000,83(3):657-659.
[13] Ueno S,Jayaseelan D D,Ohji T,et al.Corrosion and oxidation behavior of ASiO4(A=Ti,Zr and Hf)and silicon nitride with an HfSiO4 environmental barrier coating.Journal of Ceramic Proc-essing Research,2005,6(1):81-84.
[14] Chen G F,Lee K N,Tewari N S.Slurry development for the depo-sition of a GdSiO4+Mullite environmental barrier coating on sili-con carbide.Journal of Ceramic Processing Research,2007,8(2):142-144.
[15] Liu L M,Ye F,Zhang H J,et al.Celsian formation in Si3N4-Ba0.75Sr0.25Si2Al2O8 composites.Scripta Materialia,2009,60(6):463-466.
[16] Hong Z L,Cheng L F,Zhang L T,et al.Water vapor corrosion behavior of scandium silicates at 1400℃.Journal of the American Ceramic Society,2009,92(1):193-196.
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