Infrared Radiative Properties of Yttria–Stabilized Zirconia Thermal Barrier Coatings
Радиационные свойства теплозащитных покрытий из диоксида циркония, стабилизированного иттрием
2008-03-26
SCID: 54.1/vqee494z
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infrared radiative propertiesinternal scatteringspectral transmittance and reflectancethermal barrier coatingsyttria-stabilized zirconia
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Abstract (AI)
The infrared (IR) transmittance and reflectance of translucent thermal barrier coatings (TBCs) have important implications for both the performance of these coatings as radiation barriers and emitters as well as affecting measurements of TBC thermal conductivity, especially as TBCs are pushed to higher temperatures. In this paper, the infrared spectral directional-hemispherical transmittance and reflectance of plasma-sprayed 8wt% yttria-stabilized zirconia (8YSZ) TBCs are reported. These measurements are compared to those for single crystal YSZ specimens to show the effects of the plasma-sprayed coating microstructure. It is shown that the coatings exhibit negligible absorption at wavelengths up to about 5 urn, and that internal scattering rather than surface reflections dominates the hemispherical reflectance. The translucent nature of the 8YSZ TBCs results in the absorptance/emittance and reflectance of TBC–coated substrates depending on the TBC thickness, microstructure, as well as the radiative properties of the underlying substrate. The effects of these properties on TBC measurements and performance are discussed.
Key Findings
1
Because 8YSZ coatings are translucent, coated-substrate absorptance, emittance, and reflectance depend on coating thickness, microstructure, and the underlying substrate’s radiative properties.
2
Infrared directional-hemispherical transmittance and reflectance were measured for plasma-sprayed 8 wt% yttria-stabilized zirconia thermal barrier coatings.
3
Internal scattering within the plasma-sprayed microstructure, rather than surface reflection, dominates hemispherical reflectance.
4
The coatings exhibit negligible infrared absorption at wavelengths up to approximately 5 μm.
5
These radiative properties influence both the radiation-barrier and emitter performance of TBCs and the accuracy of thermal-conductivity measurements, particularly at higher temperatures.
Research Object
plasma-sprayed 8 wt% yttria-stabilized zirconia thermal barrier coatings and TBC-coated substrates
Research Subject
infrared spectral directional-hemispherical transmittance, reflectance, absorption/emittance, and their dependence on coating thickness, microstructure, and substrate radiative properties
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2008-03-26
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