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Phase evolution and thermophysical properties of plasma sprayed thick zirconia coatings after annealing

机译:等离子喷涂厚氧化锆涂层退火后的相变和热物理性质

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摘要

Yttria partially stabilized zirconia (YSZ) thick thermal barrier coatings were fabricated by Atmospheric Plasma Spraying (APS) and isothermally annealed at 1315 ℃ for different durations. The phase composition of as-sprayed and heat-treated free-standing coatings was investigated by X-ray Diffraction (XRD) and the Rietveld method was employed for quantitative phase analysis. High-temperature exposure of YSZ coatings produced the partial decomposition of metastable t' zirconia phase and the corresponding increase in the amount of stable tetragonal t, cubic c and monoclinic m phases with increasing the aging time. The thermophysical properties of as-sprayed and annealed YSZ coatings, such as thermal expansion and heat capacity, were measured. The thermal expansion coefficient kept almost constant in-plane direction after heat treatment. Otherwise, it changed in through-thickness direction due to any structural changes and high-temperature sintering of the porous microstructure. The sintering also influenced the specific heat capacity Cp which increased with increasing the annealing time.
机译:通过大气等离子喷涂(APS)制备了氧化钇部分稳定的氧化锆(YSZ)厚热障涂层,并在1315℃下等温退火了不同的时间。通过X射线衍射(XRD)研究喷涂和热处理的自立式涂料的相组成,并采用Rietveld方法进行定量相分析。 YSZ涂层的高温暴露会导致亚稳态t'氧化锆相的部分分解,并随着时效时间的增加,稳定的方形t,立方c和单斜晶m相的数量相应增加。测量了喷涂和退火后的YSZ涂层的热物理性质,例如热膨胀和热容。热处理后,热膨胀系数在面内方向几乎保持恒定。否则,由于多孔微结构的任何结构变化和高温烧结,其沿厚度方向变化。烧结还影响比热容Cp,其随着退火时间的增加而增加。

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