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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Sol-gel processing and characterization of (RE-Y)-zirconia powders for thermal barrier coatings
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Sol-gel processing and characterization of (RE-Y)-zirconia powders for thermal barrier coatings

机译:用于隔热涂层的(RE-Y)-氧化锆粉末的溶胶-凝胶加工和表征

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摘要

The effect of doping on the structural, morphological and thermal properties of ZrO2-XO_(1.5) (X = Y, La, Sm, Er) solid solutions for thermal barrier (TBC) applications was investigated. Oxide powders of various compositions from 9.7 to 40 mol% XO_(1.5) (X = Y, La, Sm, Er) were synthesised by the sol-gel route. The structural analysis of the powders was performed using X-ray diffraction analysis coupled with Rietveld refinements and the measurement of their specific surface area with the BET method. For each rare earth dopant, the morphology of the powders varies from monoliths to agglomerates of thinner particles when the doping amount increases. In order to determine the specific heat the thermal diffusivity at room temperature and the thermal expansion coefficient of some selected compositions, DSC, laser thermal diffusivity and high-temperature dilatometry measurements were performed on samples densified by Spark Plasma Sintering. Working thermal characterisation indicated that zirconia doped with 30 mol% SmO_(1.5) and ErO_(1.5) have better insulation properties and a lower thermal expansion coefficient than our reference YSZ ceramic. These various compositions are very promising for the elaboration of multilayer TBCs by the sol-gel process.
机译:研究了掺杂对热障(TBC)应用的ZrO2-XO_(1.5)(X = Y,La,Sm,Er)固溶体的结构,形态和热性能的影响。通过溶胶-凝胶法合成了9.7至40摩尔%XO_(1.5)(X = Y,La,Sm,Er)的各种组成的氧化物粉末。粉末的结构分析是使用X射线衍射分析结合Rietveld精制方法进行的,并使用BET方法测量比表面积。对于每种稀土掺杂剂,当掺杂量增加时,粉末的形态会从整料到较细颗粒的团聚体变化。为了确定比热,对通过火花等离子体烧结致密化的样品进行了DSC,激光热扩散率和高温膨胀计测量,从而确定了室温下的热扩散率和某些所选成分的热膨胀系数。工作热特性表明,与我们的参考YSZ陶瓷相比,掺杂30 mol%SmO_(1.5)和ErO_(1.5)的氧化锆具有更好的绝缘性能和更低的热膨胀系数。这些各种组成对于通过溶胶-凝胶法制备多层TBC非常有希望。

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