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首页> 外文期刊>Journal of Thermal Spray Technology >Modeling thermal conductivity of thermal spray coatings: comparing predictions to experiments
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Modeling thermal conductivity of thermal spray coatings: comparing predictions to experiments

机译:模拟热喷涂涂层的热导率:将预测与实验进行比较

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摘要

Thermal conductivity plays a critical role in the thermal transport of thermal-sprayed coatings. In this article, a combined image analysis and finite-element method approach is developed to assess thermal conductivity from high-resolution scanning electron microscopy images of the coating microstructure. Images are analyzed with a collection of image-processing algorithms to reveal the microscopic coating morphology. The processed digital image is used to generate a two-dimensional finite-element mesh in which pores, cracks, and the bulk coating material are identified. The effective thermal conductivity is then simulated using a commercial finite-element code. Results are presented for three coating material systems [yttriastabilized zirconia (YSZ), molybdenum, and NiAl], and the results are found to be in good agreement with the experimental values obtained using the laser flash method. The YSZ coatings are also annealed, and the analysis procedure was repeated to determine whether the technique can accurately assess changes in coating morphology.
机译:导热系数在热喷涂涂层的热传输中起着至关重要的作用。在本文中,开发了一种结合图像分析和有限元方法的方法,以从涂层微观结构的高分辨率扫描电子显微镜图像评估导热率。使用一组图像处理算法对图像进行分析,以揭示微观涂层形态。经过处理的数字图像用于生成二维有限元网格,其中可以识别孔,裂缝和块状涂料。然后使用商业有限元代码模拟有效导热率。给出了三种涂层系统的数据[钇稳定化氧化锆(YSZ),钼和NiAl],结果与使用激光闪光法获得的实验值非常吻合。 YSZ涂层也要进行退火,并重复分析程序以确定该技术是否可以准确评估涂层形态的变化。

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