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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Reducing the temperature of a C/C composite heat shield for solar probe missions with an optically selective semi-transparent pyrolytic boron nitride (pBN) coating
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Reducing the temperature of a C/C composite heat shield for solar probe missions with an optically selective semi-transparent pyrolytic boron nitride (pBN) coating

机译:通过光学选择性半透明热解氮化硼(pBN)涂层降低用于太阳探测器任务的C / C复合隔热板的温度

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摘要

Two solar missions are designed to plunge into the solar corona, and respectively get as close as 8.5 and 3 Rs (solar radii) from the Sun's surface. Heat shields will protect the pay-loads within their umbra from the thermal radiation and solar winds. We report the high temperature behavior of a pBN coating on a C/C composite. We established thanks to spectral emissivity measurements at high temperature that covering the C/C composite with pBN leads to a strong decrease of the ratio alpha/epsilon of the solar absorptivity to the total emissivity. The alpha/epsilon ratios calculated from the spectral emissivity measurements are correlated to the ones obtained from integrated emissivity measurements. A resulting surface temperature reduction of 200 K is estimated at 8.5 solar radii between uncoated C/C and pBN coated C/C. In the semi-transparent region of the spectral emissivity of pBN, located in the solar spectrum, the substrate C/C keeps a strong contribution in the spectral emissivity of the assembly pBN + C/C. The level of this contribution is function of the pBN coating thickness. Finally, material characterizations performed before and after treatment at 2200 K showed that the pBN coating has a good stability at high temperature. (C) 2014 Elsevier Ltd. All rights reserved.
机译:设计了两个太阳任务,以插入太阳日冕,分别从太阳表面获得近8.5和3 Rs(太阳半径)的能量。隔热罩将保护其本影内部的有效载荷免受热辐射和太阳风的影响。我们报告了在C / C复合材料上pBN涂层的高温行为。我们建立了在高温下进行光谱发射率测量的结果,该测量结果用pBN覆盖了C / C复合材料,导致太阳吸收率α/ε与总发射率之比大大降低。从光谱发射率测量值计算出的α/ε比值与从综合发射率测量值获得的值相关。在未涂覆的C / C和pBN涂覆的C / C之间,在8.5太阳半径下,估计的表面温度降低了200K。在位于太阳光谱中的pBN光谱发射率的半透明区域中,基板C / C在组件pBN + C / C的光谱发射率中起着重要作用。该贡献的水平是pBN涂层厚度的函数。最后,在2200 K下处理前后进行的材料表征表明,pBN涂层在高温下具有良好的稳定性。 (C)2014 Elsevier Ltd.保留所有权利。

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