Oxidation induced emissivity evolution of silicon carbide based thermal protection materials in hypersonic environments

发射率 材料科学 碳化硅 大气温度范围 消散 氧化物 温度跃变 复合材料 热力学 光学 冶金 物理
作者
Liping Liu,Lingwei Yang,Haojun Ma,Jie Luo,Rende Mu,Changhao Zhao,Jun Zhang,Guolin Wang,Yiguang Wang
出处
期刊:Journal of Asian Ceramic Societies [Taylor & Francis]
卷期号:9 (4): 1506-1515 被引量:13
标识
DOI:10.1080/21870764.2021.1999559
摘要

The emissivity of typical SiC-based thermal protection materials was measured in-situ at a wide temperature range (800 ~ 2300°C) inside a plasma wind tunnel that was capable of simulating hypersonic environments on-ground. Based on it, the evolution mechanism dominated by dynamic oxidation was discussed. The results suggest an emissivity of Cf/SiC 0.84 ~ 0.88 at 858 ~ 1502°C, prior to “temperature jump”. If “temperature jump” emerged, the emissivity was decreased rapidly to ≈0.76. The emissivity drop was explained by the microstructural transition of the oxidized surfaces that were triggered by the dissipation of SiO2 oxide scale at 1600 ~ 1900°C. Similar emissivity evolution was observed in SiCf/SiC after “temperature jump”. The effect of temperature on the emissivity of ZrB2-SiC was more pronounced. It was increased from ≈0.73 to ≈0.98 at 1009 ~ 1297°C, and was plateaued at 1298 ~ 1497°C, ≈0.98. This was a consequence of the formation of higher percentage SiO2-rich layers. However, due to the dissipation of SiO2 and B2O3, the emissivity of ZrB2-SiC was declined at higher temperatures, from ≈0.98 (≈1497°C) to ≈0.85 (≈1768°C).
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