会议论文详细信息
6th International Conference on Fracture Fatigue and Wear
Theoretical prediction of energy release rate for interface crack initiation by thermal stress in environmental barrier coatings for ceramics
Kawai, E.^1 ; Umeno, Y.^1
Institute of Industrial Science, University of Tokyo, 4-6-1, Komaba, Meguro-ku, Tokyo
153-8505, Japan^1
关键词: Environmental barrier coatings;    Finite element method analysis;    High pressure turbine;    Interface crack initiations;    Mechanical reliability;    Multiplication factor;    SiC matrix composites;    Silicon carbide fiber;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/843/1/012004/pdf
DOI  :  10.1088/1742-6596/843/1/012004
来源: IOP
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【 摘 要 】

As weight reduction of turbines for aircraft engines is demanded to improve fuel consumption and curb emission of carbon dioxide, silicon carbide (SiC) fiber reinforced SiC matrix composites (SiC/SiC) are drawing enormous attention as high-pressure turbine materials. For preventing degradation of SiC/SiC, environmental barrier coatings (EBC) for ceramics are deposited on the composites. The purpose of this study is to establish theoretical guidelines for structural design which ensures the mechanical reliability of EBC. We conducted finite element method (FEM) analysis to calculate energy release rates (ERRs) for interface crack initiation due to thermal stress in EBC consisting of Si-based bond coat, Mullite and Ytterbium (Yb)-silicate layers on a SiC/SiC substrate. In the FEM analysis, the thickness of one EBC layer was changed from 25 μm to 200 μm while the thicknesses of the other layers were fixed at 25 μm, 50 μm and 100 μm. We compared ERRs obtained by the FEM analysis and a simple theory for interface crack in a single-layered structure where ERR is estimated as nominal strain energy in the coating layers multiplied by a constant factor (independent of layer thicknesses). We found that, unlike the case of single-layered structures, the multiplication factor is no longer a constant but is determined by the combination of consisting coating layer thicknesses.

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