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Enhanced thermal emittance of space radiators by ion-discharge chamber texturing

机译:通过离子放电室纹理化提高空间散热器的散热能力

摘要

The discharge chamber of a 30-cm argon ion source was successfully used to texture potential space radiator materials for the purpose of obtaining values of thermal emittance greater than 0.85 at 700 and 900 K. Some samples were also treated in acid prior to texturing. To evaluate the durability of the textured materials to atomic oxygen, samples were exposed to an RF air plasma environment. The spectral emittance between 2.0 anf 15.0 microns was measured before and after the textured materials were exposed to the plasma asher. The results indicate that copper with extremely high values of emittance after texturing (0.978 and 0.983) at 700 and 900 K, respectively,did not change its values of emittance after ashing, whereas the emittance of stainless steel fell below 0.85 after ashing. These data, along with scanning electron photomicrographs, and the results of texturing and ashing titanium and Nb(1)Zr are presented .
机译:30厘米氩离子源的放电室已成功用于构造潜在的空间散热器材料,目的是在700和900 K时获得大于0.85的热发射率值。在纹理化之前,还对某些样品进行了酸处理。为了评估纹理材料对原子氧的耐久性,将样品暴露在RF空气等离子体环境中。在纹理化材料暴露于等离子灰化之前和之后,测量了在2.0和15.0微米之间的光谱发射率。结果表明,分别在700 K和900 K下织构化后的发射率值极高的铜(0.978和0.983),其灰化后的发射率值没有改变,而灰化后不锈钢的发射率则降至0.85以下。这些数据,连同扫描电子显微照片,以及钛和Nb(1)Zr的织构化和灰化的结果,均会给出。

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