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首页> 外文期刊>Journal of the European Ceramic Society >In situ microscopy observation of liquid flow, zirconia growth, and CO bubble formation during high temperature oxidation of zirconium diboride-silicon carbide
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In situ microscopy observation of liquid flow, zirconia growth, and CO bubble formation during high temperature oxidation of zirconium diboride-silicon carbide

机译:二硼化锆-碳化硅高温氧化过程中的液体流动,氧化锆生长和CO气泡形成的原位显微镜观察

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摘要

The oxidation of ZrB_2-SiC composites at 1450-1650℃ was directly observed with in situ optical microscopy. Video frames showed the flow of silicate liquids, the formation of zirconia deposits, and the growth and collapse of gaseous bubbles on the oxide surface. Contrast in the incandescence of in situ images is analyzed as spatial variations in hue and intensity and related to differences in emissivity of the oxide scale surface features by comparing these hot images with room temperature images. Above 1450℃, gaseous bubbles were observed to grow and collapse causing perturbations in the liquid oxide on the surface. The bubbles are associated with the evolution of CO from SiC oxidation and the onset is related to the critical temperature where the partial pressure of CO under the oxide scale exceeds atmospheric pressure.
机译:用原位光学显微镜直接观察了ZrB_2-SiC复合材料在1450-1650℃的氧化。视频帧显示了硅酸盐液体的流动,氧化锆沉积物的形成以及氧化物表面上气泡的生长和破裂。通过将这些热图像与室温图像进行比较,分析了原位图像白炽度的对比,作为色调和强度的空间变化,并与氧化皮表面特征的发射率差异相关。在1450℃以上,观察到气泡的生长和破裂,引起表面液态氧化物的扰动。气泡与SiC氧化过程中产生的CO有关,而气泡的开始与临界温度有关,在临界温度下,氧化皮下的CO分压超过大气压。

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