首页> 外文期刊>Journal of the European Ceramic Society >Mass spectrometric measurements of the silica activity in the Yb2O3-SiO2 system and implications to assess the degradation of silicate-based coatings in combustion environments
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Mass spectrometric measurements of the silica activity in the Yb2O3-SiO2 system and implications to assess the degradation of silicate-based coatings in combustion environments

机译:质谱法测量Yb2O3-SiO2系统中二氧化硅的活性及其对评估燃烧环境中硅酸盐基涂料降解的影响

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The Yb2O3-SiO2 system is a promising coating material for silicon-based ceramics and composites in combustion environments due to the low silica activity in this silicate system. These activities lead to lower reactivity with the water vapor component of a combustion environment and hence less formation of Si(OH)(4)(g). In this study the silica activities in the Yb2O3-SiO2 system are measured via a vapor pressure technique. Reducing agents are used to increase the vapor pressure of SiO(g) so that it is measureable in the temperature range of interest. The measured SiO(g) pressures are then used to calculated the silica activities. Activities are reported as a function of temperature for the Yb2O3 + Yb2SiO5 and Yb2SiO5 + Yb2Si2O7 biphasic fields. Combining the results of this work with those reported earlier, it was found that the flux of silicon tetra-hydroxide and the thermodynamic activity of silica are lower in the biphasic fields of yttrium silicates and yttrium oxide than the biphasic field consisting of ytterbium silicates and ytterbium oxide. This difference has been attributed to the smaller ionic potential of yttrium and higher optical basicity of yttrium silicates when compared to the bigger ionic potential of ytterbium and smaller optical basicity of ytterbium silicates in these systems. The measured activities are then used to calculate some representative Si(OH)(4)(g) fluxes from Yb2O3-SiO2 compounds in a typical laboratory test furnace and compared to literature values. Published by Elsevier Ltd.
机译:Yb2O3-SiO2系统是一种有前途的涂料,可用于燃烧环境中的硅基陶瓷和复合材料,因为该硅酸盐系统中的二氧化硅活性较低。这些活性导致与燃烧环境中的水蒸气组分的反应性降低,因此较少形成Si(OH)(4)(g)。在这项研究中,通过蒸气压技术测量了Yb2O3-SiO2系统中的二氧化硅活性。还原剂用于增加SiO(g)的蒸气压,以便可以在感兴趣的温度范围内对其进行测量。然后将测得的SiO(g)压力用于计算二氧化硅活性。据报道,Yb2O3 + Yb2SiO5和Yb2SiO5 + Yb2Si2O7双相场的活度是温度的函数。将这项工作的结果与先前报道的结果相结合,发现在硅酸钇和氧化钇的双相场中,四氢硅的通量和二氧化硅的热力学活性低于由硅酸和and组成的双相场。氧化物。与这些系统中的较大离子电势和较小的硅酸光学碱性相比,该差异归因于钇的较小离子电势和较高的硅酸钇光学碱度。然后,将所测得的活性用于在典型的实验室测试炉中从Yb2O3-SiO2化合物计算一些代表性的Si(OH)(4)(g)通量,并将其与文献值进行比较。由Elsevier Ltd.发布

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