王小贞, 张士元, 郑百林, 贺鹏飞. 结构层热扩散系数对超薄涂层热力性能的影响[J]. 力学与实践, 2008, 30(4): 68-72. DOI: 10.6052/1000-0992-2007-110
引用本文: 王小贞, 张士元, 郑百林, 贺鹏飞. 结构层热扩散系数对超薄涂层热力性能的影响[J]. 力学与实践, 2008, 30(4): 68-72. DOI: 10.6052/1000-0992-2007-110
INFLUENCE OF THERMAL DIFFUSIVITY OF SUBSTRATE ON THERMODYNAMIC PROPERTIES OF THE VERY THIN THERMAL BARRIER COATINGS[J]. MECHANICS IN ENGINEERING, 2008, 30(4): 68-72. DOI: 10.6052/1000-0992-2007-110
Citation: INFLUENCE OF THERMAL DIFFUSIVITY OF SUBSTRATE ON THERMODYNAMIC PROPERTIES OF THE VERY THIN THERMAL BARRIER COATINGS[J]. MECHANICS IN ENGINEERING, 2008, 30(4): 68-72. DOI: 10.6052/1000-0992-2007-110

结构层热扩散系数对超薄涂层热力性能的影响

INFLUENCE OF THERMAL DIFFUSIVITY OF SUBSTRATE ON THERMODYNAMIC PROPERTIES OF THE VERY THIN THERMAL BARRIER COATINGS

  • 摘要: 将非傅立叶热传导模型(用于超薄热涂层)与傅立叶热传导模型(用于结构层)相结合求解温度场,运用有限元法求解热涂层热应力和裂纹驱动力,并分析结构层材料热扩散系数的变化对热涂层的热力学性能(温度场、应力场和断裂性能)的影响. 研究表明,结构层材料性能变化对温度场的影响主要表现在热冲击后期,对热应力和裂纹尖端驱动力后期的变化也有一定的影响.

     

    Abstract: When thermal barrier coatings (TBCs) are madeinto laminate in micro/nano scale, the heat transfer theory in macroscale, Fourier heat equation, can not be used. But it can stillbe used in the substrate under TBCs. In this paper, the temperaturefield obtained from combining non-Fourier heat conduction model forTBCs and Fourier heat conduction model for substrate is used as thethermal load in the finite element analyses of thermal stress and J-integralof an edge crack in the TBCs. Influence of thermal diffusivity ofsubstrate on the TBCs thermodynamic properties (temperature field,thermal stress and J-integral) is analyzed. The conclusion is that influencetakes effect in the final thermal shock.

     

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