材料科学
微观结构
抗弯强度
陶瓷
无定形固体
复合材料
热导率
多孔性
高分辨率透射电子显微镜
矿物学
分析化学(期刊)
作者
Jeong-Ah Yeom,Eun Seo Kang,Young-Wook Kim,Woo Hyun Nam
标识
DOI:10.1016/j.jeurceramsoc.2022.04.050
摘要
The intrinsic microstructure and crystalline phases of porous SiC ceramics with 5 vol% AlN–RE 2 O 3 (RE = Sc, Y, Lu) additives were characterized by high-resolution transmission microscopy with energy-dispersive spectroscopy and X-ray diffraction. The homophase (SiC/SiC) and heterophase (SiC/junction) boundaries were found to be clean; that is, amorphous films were not observed in the specimens. In addition, ScN, YN, and LuN were formed as secondary phases. The flexural strength and thermal conductivity of the ceramics were successfully tuned using different additive compositions. The flexural strength of the ceramics improved by a factor of ~3, from 11.7 MPa for the specimen containing Y 2 O 3 to 34.2 MPa for that containing Sc 2 O 3 , owing to the formation of a wide necking area between SiC grains. For the same reason, the thermal conductivity improved by ~56%, from 9.2 W·m −1 ·K −1 for the specimen containing Lu 2 O 3 to 14.4 W·m −1 ·K −1 for that containing Sc 2 O 3 .
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