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首页> 外文期刊>Journal of the European Ceramic Society >Oxidation of PM1000 and C/C-SiC exposed to Highly Dissociated Oxygen and Nitrogen Flows
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Oxidation of PM1000 and C/C-SiC exposed to Highly Dissociated Oxygen and Nitrogen Flows

机译:暴露于高度解离的氧气和氮气流的PM1000和C / C-SiC的氧化

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The present work investigates the formation and stability of different oxides on PM1000, an Oxide dispersion-strengthened (ODS) Ni-Cr superalloy, and on SiC coated C/C-SiC after being exposed to highly dissociated nitrogen and oxygen flows in a Plasma Wind Tunnel (PWT). PM1000 and C/C-SiC are candidate materials for reentry vehicles Thermal Protection System (TPS) and were used e.g. on the European eXPErimental Re-entry Testbed (EXPERT). The surface characterisation covers the identification of the oxide layers formed on the specimen's surface via X-ray Diffraction (XRD) and Energy-Dispersive X-ray spectroscopy (EDX). Grain sizes are assessed from XRD patterns and different topographical features are identified for Cr2O3 and NiO on PM1000 samples from Secondary Electron Microscopy (SEM). Surface spectral and total normal emissivities of the different oxides are assessed showing a significant dependency on the oxide, which is verified with previous investigations on ground and with flight data from the FOTON capsule.
机译:本作本作研究不同氧化物对PM1000的形成和稳定性,氧化物分散化(ODS)Ni-Cr超合金,并在暴露于高度离解的氮气和氧气流中的等离子风中的氧气流动隧道(PWT)。 PM1000和C / C-SIC是用于再入车辆热保护系统(TPS)的候选材料,并被使用。在欧洲实验再入试验台(专家)。表面表征覆盖通过X射线衍射(XRD)和能量分散X射线光谱(EDX)在样品表面上形成的氧化物层的识别。从XRD模式评估晶粒尺寸,并在来自二次电子显微镜(SEM)的PM1000样品上的CR2O3和NIO鉴定不同的地形特征。评估不同氧化物的表面光谱和总正态发射率,显示对氧化物的显着依赖性,这些依赖性通过以前的地面研究和来自富孔胶囊的飞行数据进行了验证。

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