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Corrosion resistance and microstructural evolution of Y-Al-Si-O glass-ceramics environmental barrier coating candidate in the presence of CMAS
被引:0
|作者:
Ma, Yujie
[1
]
Guo, Chun
[1
]
Meng, Xinyu
[1
]
Yang, Shaobo
[1
]
Kou, Sijie
[1
]
Deng, Juanli
[2
]
Fan, Shangwu
[1
]
Liu, Xingmin
[3
]
机构:
[1] Northwestern Polytech Univ, Sci & Technol Thermostruct Composite Mat Lab, Xian 710072, Shaanxi, Peoples R China
[2] Changan Univ, Sch Mat Sci & Engn, Xian 710064, Shaanxi, Peoples R China
[3] Northwestern Polytech Univ, Ctr Adv Lubricat & Seal Mat, State Key Lab Solidificat Proc, Xian 710072, Peoples R China
关键词:
Y-Al-Si-O glass-ceramics;
CMAS corrosion;
Microstructural evolution;
Corrosion thermodynamics;
CALCIUM-MAGNESIUM-ALUMINOSILICATE;
SICF/PYC/SIC COMPOSITES;
Y2O3-AL2O3-SIO2;
SYSTEM;
MECHANICAL-PROPERTIES;
HEAT-TREATMENT;
PART I;
DEGRADATION;
OXIDATION;
YTTRIUM;
CRYSTALLIZATION;
D O I:
10.1016/j.matchar.2024.114685
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
The corrosion resistance of Y2O3-Al2O3-SiO2 (YAS) microcrystalline glass against molten calcium-magnesiumaluminium-silicate (CMAS) attack was systematically investigated at 1350 degrees C. YAS microcrystalline glass, possessing an optical basicity (OB) value comparable to that of CMAS, demonstrates enhanced resistance to CMAS corrosion, with a corrosion depth of similar to 70 mu m following 10 h of exposure. YAS ceramics, upon corrosion, formed two distinct layers at the interface: a transition layer adjacent to the CMAS melt and a reaction layer closer to the YAS ceramic. The transition layer comprised anorthite and CMAS melt, while the reaction layer included apatite, anorthite, and a small amount of the amorphous phase. The transition and reaction layers, formed after corrosion, were extremely dense, with no cracks or other destructive defects observed. The superior CMAS corrosion resistance of YAS ceramics provides substantial theoretical support for its application as an environmental barrier coating (EBC).
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页数:10
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