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Knudsen Effect on the Estimation of the Effective Thermal Conductivity of Thermal Barrier Coatings

机译:对热阻挡涂层有效导热系数估计的knudsen影响

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A numerical model based on the use of cross-sectional micrographies and a 3D image of thermal barrier coatings for the estimation of the material effective thermal conductivity is presented. The case of a YSZ thermal spray coating consisting of a 2 phase network, namely, the coating material and pores, is considered. The variation of the thermal conductivity of pores caused by their small size was considered by taking the Knudsen effect into account. The quantification of this effect on the effective thermal conductivity of the coating was achieved with the help of image analysis combined with an in-house program coded in C language. Finite-difference (FD) and finite-element (FE) models were applied using both 2D images and a 3D image. Despite the differences in the computed values obtained with these two numerical methods, the decrease of the computed thermal conductivity caused by the Knudsen effect was found to remain quite moderate for both methods (i.e., about 3-5% for the 3D results).
机译:提出了一种基于横截面显微镜和估计材料有效导热率的热阻挡涂层的3D图像的数值模型。考虑了由2相网组成的YSZ热喷涂涂层的情况,即涂层材料和孔。考虑到knudsen效应,考虑由它们的小尺寸引起的孔导热率的变化。利用图像分析与C语言编码的内部程序相结合,实现了对涂层的有效导热率的这种影响的定量。使用2D图像和3D图像应用有限差分(FD)和有限元(FE)模型。尽管用这两个数值方法获得的计算值存在差异,但发现由knudsen效应引起的计算的导热率降低,对于两种方法(即3D结果为3-5%)保持非常适中。

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