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首页> 外文期刊>Journal of the European Ceramic Society >Experimental investigation of passive/active oxidation behavior of SiC based ceramic thermal protection materials exposed to high enthalpy plasma
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Experimental investigation of passive/active oxidation behavior of SiC based ceramic thermal protection materials exposed to high enthalpy plasma

机译:高焓等离子体下SiC基陶瓷热保护材料被动/主动氧化行为的实验研究

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摘要

The passive/active oxidation behavior of a CVD-SiC coated C/C-SiC thermal protection material of the hypersonic SpaceLiner vehicle is investigated experimentally. For the safety of spacecraft and its passengers, it is important to know whether the thermal protection system will experience passive/active oxidation during the vehicle's entry into Earth's atmosphere. Active oxidation can promote material loss whereas passive oxidation forms a protective film.The high enthalpy flight conditions of SpaceLiner vehicle are duplicated in VKI Plasmatron, where the samples are exposed to high enthalpy plasma and the surface temperatures increase up to 2800 K at various total pressure (2-20 kPa) conditions. Surface temperature profiles, visual characteristics, mass changes, emissivity, spectrometer and SEM/EDX data are examined to identify the oxidation transition border of the tested material. A temperature jump is observed in all active oxidation regimes. The experimental results are found to be in good agreement with correlations from the literature.
机译:实验研究了超音速SpaceLiner车辆的CVD-SiC涂层C / C-SiC热保护材料的被动/主动氧化行为。为了航天器及其乘客的安全,重要的是要知道热保护系统在飞行器进入地球大气层期间是否会经历被动/主动氧化。主动氧化可促进材料损失,而被动氧化可形成保护膜。VKIPlasmatron中复制了SpaceLiner车辆的高焓飞行条件,其中样品暴露于高焓等离子体中,并且在各种总压力下,表面温度升高至2800 K (2-20 kPa)条件。检查表面温度曲线,视觉特征,质量变化,发射率,光谱仪和SEM / EDX数据,以确定被测材料的氧化转变边界。在所有活性氧化方案中均观察到温度上升。发现实验结果与文献中的相关性很好。

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