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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Microstructure and gas-surface interaction studies of a 3D carbon/carbon composite in atmospheric entry plasma
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Microstructure and gas-surface interaction studies of a 3D carbon/carbon composite in atmospheric entry plasma

机译:大气进入等离子体中3D碳/碳复合材料的微观结构和气体表面相互作用研究

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3D Carbon-fiber reinforced carbon composites (3D C-f/C) are widely used as thermostructural protections in various applications. Among them, thermal protection systems for atmospheric re-entry encounter one of the most aggressive environments, where 3D C-f/C are exposed to strong ablation. Because flight tests are extremely expensive, Inductively Coupled Plasma torch is a good compromise to understand the behaviour of this material under ablative conditions. The Plasmatron of the von Karman Institute for Fluid Dynamics is used in this study, coupled with a numerical rebuilding of the flow. Air and argon flows are used on flat and hemispherical 3D C-f/C samples leading to surface temperatures ranging from 1800 degrees C to 2500 degrees C. In-situ measurements are performed coupled with SEM micrography and 3D pictures from digital optical microscopy in order to understand the epi-macro-structural and the epi-microstructural roughness of the composite. The internal structure of the composite was revealed by the differences in ablation resistance between constituents. It is found that the flow field has a major contribution to the composite macroscopic and mesoscopic roughness and recession velocity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:3D碳纤维增强碳复合材料(3D C-F / C)广泛用作各种应用中的热固性保护。其中,用于大气重新进入的热保护系统遇到最具侵略性的环境之一,其中3D C-F / C暴露于强烈的消融。由于飞行试验非常昂贵,电感耦合等离子体炬是一种良好的折衷,以了解在烧蚀条件下的这种材料的行为。在本研究中使用了von Karman流体动力学研究所的素质素,与流量的数值重建相结合。空气和氩气流用于平面和半球形3D CF / C样品,导致表面温度范围为1800摄氏度至2500℃。原位测量与SEM显微镜和3D图像相结合,以便理解复合材料的环形宏观结构和外部微观结构粗糙度。复合材料的内部结构被组分之间消融抗性的差异揭示。结果发现流场对复合宏观和介面粗糙度和衰退速度具有重要贡献。 (c)2016 Elsevier Ltd.保留所有权利。

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