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White Anodic Coatings on Aluminum Alloy with Low Ratio of Solar Absorptance to Infrared Emittance

机译:太阳吸收率与红外发射率之比低的铝合金上的白色阳极涂层

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摘要

White anodic coatings are gained by growth in situ on the aluminum alloy. The coatings possess stable optical properties, excellent adhesive power, low cost, stability in the space environment, and so on, which can be widely used in the thermal control system of spacecrafts. In this article, the developed Al_2O_3 thermal control coatings that had a low solar absorptance and a high infrared emittance were gained in the electrolyte of sulfuric acid. The influences of various process parameters, such as electrolyte temperature, current density, anodizing time, on the optical properties of the coatings were investigated. AFM and XRD were used to characterize the microstructure of the coatings. Experimental results show the anodic coatings could reach a solar absorptance value lower than 0.20 and an infrared emittance higher than 0.80. Therefore, the coatings can be applied as important thermal control coatings for space applications.
机译:通过在铝合金上原位生长获得白色阳极涂层。该涂料具有稳定的光学性能,优异的粘合力,低成本,在太空环境中的稳定性等优点,可广泛用于航天器的热控制系统中。在本文中,开发了一种在硫酸电解质中具有低太阳吸收率和高红外发射率的Al_2O_3热控制涂层。研究了诸如电解质温度,电流密度,阳极氧化时间等各种工艺参数对涂层光学性能的影响。用AFM和XRD表征涂层的微观结构。实验结果表明,该阳极涂层的日光吸收率值可以小于0.20,红外发射率可以大于0.80。因此,该涂料可用作空间应用的重要热控制涂料。

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