材料科学
陶瓷
复合材料
聚焦离子束
升华(心理学)
扫描电子显微镜
热膨胀
热的
燃烧
立方氧化锆
陶瓷基复合材料
有限元法
结构工程
离子
物理
工程类
量子力学
气象学
有机化学
化学
心理学
心理治疗师
作者
J W Kim,N K Kim,Stefan Stenfelt
标识
DOI:10.18462/iir.tptpr.2017.0017
摘要
Ceramic-metal composites (CMC) have been used for various high temperature applications including combustion engines, steam and gas turbines, industrial heaters and ceramic fuel cells. Reliable incorporation of the CMC at elevated temperatures, however, is very difficult in practice for the following reasons. First, meting and sublimation points of those solids are different causing undesired diffusion and mixing of elements across the material boundaries degrading functions of the materials. Secondly, maintaining temperature and pressure regimes for desired phases of the component materials is challenging during operation in many of practical cases. Lastly, thermal expansion rates of those two materials are significantly different frequently causing mechanical stresses and fractures. There have been numerous efforts to evaluate and design the CMC materials to minimize the thermo-mechanical stresses. Among various techniques, the focused ion beam-scanning electron microscope (FIB-SEM) tomography has been proved as a state-of-art technique to obtain 3D compositional and structural information of the CMC materials. In this study, we have evaluated thermal stresses applied on nickel-zirconia CMCs by using the FIB-SEM 3D tomography and finite element analysis.
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