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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental study on radiative properties of air plasma sprayed thermal barrier coatings
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Experimental study on radiative properties of air plasma sprayed thermal barrier coatings

机译:空气等离子喷涂热障涂层辐射性能的实验研究

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In this paper the radiative properties of air plasma sprayed (APS) thermal barrier coatings are investigated by measuring the spectral normal-hemispherical reflectance and transmittance of samples with various thickness and porosities in a broad spectral band ranging from 250 nm to 15 urn. The spectral absorption and scattering coefficients are obtained by a four flux model based on the experimental data. The results show that the porous zirconia ceramics exhibits high scattering coefficient (> 15,000 m~(-1)) and low absorption coefficient (<500 m~(-1)) in the spectral range from 0.5 to 5.5 μm. Moreover, the scattering coefficient increases with increasing porosity, while the spectral absorption coefficient is not quite sensitive to the change of porosity. In order to examine the effects of microstructure of porous zirconia coatings, a theoretical model of Mie scattering is established, and a fairly good agreement with the experimental data is achieved. The results indicate that the scattering coefficient heavily depends on the microstructures of coatings, i.e., pore size, porosity and pore distribution, and this will in turn considerably affect the thermal radiation heat transfer inside the coating.
机译:本文通过在250 nm至15 um的宽光谱带中测量各种厚度和孔隙率的样品的光谱法半球反射率和透射率,研究了空气等离子喷涂(APS)热障涂层的辐射性能。根据实验数据,通过四通量模型获得光谱吸收和散射系数。结果表明,多孔氧化锆陶瓷在0.5〜5.5μm的光谱范围内具有较高的散射系数(> 15,000 m〜(-1))和较低的吸收系数(<500 m〜(-1))。此外,散射系数随孔隙度的增加而增加,而光谱吸收系数对孔隙度的变化并不十分敏感。为了检验多孔氧化锆涂层微观结构的影响,建立了米氏散射的理论模型,并与实验数据取得了较好的吻合。结果表明,散射系数在很大程度上取决于涂层的微观结构,即孔径,孔隙率和孔分布,这反过来将极大地影响涂层内部的热辐射传热。

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