Determination of Scattering and Absorption Coefficients for Plasma‐Sprayed Yttria‐Stabilized Zirconia Thermal Barrier Coatings at Elevated Temperatures

Определение коэффициентов рассеяния и поглощения для термобарьерных покрытий из плазменно-напылённой диоксид-циркониевой керамики, стабилизированной оксидом иттрия, при повышенных температурах
Jeffrey I. Eldridge, C. M. Spuckler, James R. Markham
2009-08-11

8YSZ thermal barrier coatingsabsorption coefficientfour-flux Kubelka–Munk methodmultiphonon absorptionscattering coefficient
The temperature dependence of the scattering and absorption coefficients for a set of freestanding plasma‐sprayed 8 wt% yttria‐stabilized zirconia (8YSZ) thermal barrier coatings (TBCs) was determined at temperatures up to 1360°C in a wavelength range from 1.2 μm up to the 8YSZ absorption edge. The scattering and absorption coefficients were determined by fitting the directional‐hemispherical reflectance and transmittance values calculated by a four‐flux Kubelka–Munk method to the experimentally measured hemispherical‐directional reflectance and transmittance values obtained for five 8YSZ thicknesses. The scattering coefficient exhibited a continuous decrease with increasing wavelength and showed no significant temperature dependence. The scattering is primarily attributed to the relatively temperature‐insensitive refractive index mismatch between the 8YSZ and its internal voids. The absorption coefficient was very low (<1 cm −1 ) at wavelengths between 2 μm and the absorption edge and showed a definite temperature dependence that consisted of a shift of the absorption edge to shorter wavelengths and an increase in the weak absorption below the absorption edge with increasing temperature. The shift in the absorption edge with temperature is attributed to strongly temperature‐dependent multiphonon absorption. While TBC hemispherical transmittance beyond the absorption edge can be predicted by a simple exponential decrease with thickness, below the absorption edge, typical TBC thicknesses are well below the thickness range where a simple exponential decrease in hemispherical transmittance with TBC thickness is expected. [Correction added after online publication August 11, 2009: “edge to a shorter wavelengths” has been updated as “edge to shorter wavelengths.”]
1
Beyond the absorption edge, hemispherical transmittance follows a simple exponential thickness dependence; below it, typical TBCs are too thin for this approximation.
2
Increasing temperature shifts the absorption edge toward shorter wavelengths, attributed to strongly temperature-dependent multiphonon absorption.
3
The absorption coefficient remains below 1 cm⁻¹ between 2 μm and the absorption edge but increases with temperature below the edge.
4
The scattering coefficient decreases continuously with wavelength and shows no significant temperature dependence, consistent with refractive-index mismatch between 8YSZ and internal voids.
5
The study determines temperature-dependent scattering and absorption coefficients for freestanding plasma-sprayed 8YSZ coatings up to 1360°C across 1.2–8 μm wavelengths.

Freestanding plasma-sprayed 8 wt% yttria-stabilized zirconia thermal barrier coatings at elevated temperatures

Temperature- and wavelength-dependent scattering and absorption coefficients, including their optical origins and thickness-dependent hemispherical transmittance

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2009-08-11
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Jeffrey I. Eldridge
C. M. Spuckler
James R. Markham
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