材料科学
热冲击
热障涂层
复合材料
氧化钇稳定氧化锆
温度循环
涂层
缩进
微观结构
热的
陶瓷
立方氧化锆
物理
气象学
作者
Dong Heon Lee,Tae Woo Kim,Kee Sung Lee,Chul Kim
标识
DOI:10.4191/kcers.2018.55.5.04
摘要
This study investigate changes in mechanical behaviors such as indentation load-displacement and hardness of thermal barrier coatings (TBCs) using cycling of thermal shock test. Relatively dense and porous TBCs on nickel-based bondcoat/super alloy are prepared using different starting granules, 204C-NS and 204NS commercial powers, and the effect of double layers of 204C-NS on 204NS and 204NS on 204C-NS are investigated. The highest temperature applied during thermal shock test is 1100°C and the maximum number of cycles is 1,200. The results indicate that bilayered TBC showed a relatively mechanically resistant property during thermal shock cycles and that the mechanical behavior is influenced by the microstructure of TBCs by exposure to high temperature during tests or different starting granules. Key words: Coatings, Thermal shock, Hardness, Mechanical properties
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