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The impact of manufacturing technology on the thermal and electrical properties of ceramic powders intended for spraying using the APS method

机译:制造技术对使用APS方法喷涂喷射的陶瓷粉末热电性能的影响

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This article describes the microstructures, chemical and phase compositions, surface morphologies, and internal structures of three ZrO_2 x 8 Y_2O_3-type of powders obtained by different manufacturing methods. The first of the analyzed powders was a conventionally prepared form of the material obtained by the spraying method. The second powder was a spherically shaped form of the material obtained frorn the spray drying process. It displayed a distinctive surface morphology characterized by a rough structure with visible cavities. The particle sizes of these two powders were comparable. The third form of the powder was classified as "nano" and was obtained by a grinding and crushing method. The shapes of individual particles were generally polyhedral with smooth surfaces and no visible porosity. A study of the chemical composition of each form of the powder did not show significant differences, similar to the results obtained from the phase composition study. The results of thermal diffusivity and electrical impedance studies indicated that the electrical and thermal properties of the powders with spherical structures, i.e., sprayed and spray drying, were very similar. The thermal diffusivity and impedance properties of these two powders were greater than those of the ground powder with a finer grain size.
机译:本文介绍了通过不同制造方法获得的三种ZrO_2×8y_2O_3型粉末的微观结构,化学和相组合物,表面形态和内部结构。分析的粉末中的第一个是通过喷涂方法获得的材料的常规制备的形式。第二粉末是在喷雾干燥过程中获得的材料的球形形式。它显示出特殊的表面形态,其特征在于具有可见腔的粗糙结构。这两种粉末的颗粒尺寸可相当。将第三种形式的粉末分为“纳米”,通过研磨和破碎方法获得。单个颗粒的形状通常是多面体,具有光滑的表面和无可见孔隙率。对各种形式的粉末的化学成分的研究没有显示出显着的差异,类似于从相组合物研究获得的结果。热扩散性和电阻抗研究的结果表明,具有球形结构的粉末的电气和热性能,即喷涂和喷雾干燥,非常相似。这两种粉末的热扩散性和阻抗性质大于具有更精细的粒度的地面粉末的粉末。

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