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The Study of Simulated Space Radiation Environment Effect on Conductive Properties of ITO Thermal Control Materials

机译:模拟空间辐射环境对ITO热控制材料导电性能的影响

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In order to prevent detrimental effects of ESD caused by differential surface charging of spacecraft under space environments, an ITO transparent conductive coating is often deposited on the thermal control materials outside spacecraft. Since the ITO coating is exposed in space environment, the environment effects on electrical property of ITO coatings concern designers of spacecraft deeply. This paper introduces ground tests to simulate space radiation environmental effects on conductive property of ITO coating. Samples are made of ITO/OSR, ITO/Kapton/Al and ITO/FEP/Ag thermal control coatings. Simulated space radiation environment conditions are NUV of 500ESH, 40 keV electron of 2 × 10~(16) e/cm~2,40 keV proton of 2.5 × 10~(15) p/cm~2. Conductive property is surface resistivity measured in-situ in vacuum. Test results proved that the surface resistivity for all ITO coatings have a sudden decrease in the beginning of environment test. The reasons for it may be the oxygen vacancies caused by vacuum and decayed RIC caused by radiation. Degradation in conductive properties caused by irradiation were found. ITO/FEP/Ag exhibits more degradation than other two kinds. The conductive property of ITO/ kapton/Al is stable for vacuum irradiation. The analysis of SEM and XPS found more crackers and less Sn and In concentration after irradiation which may be the reason for conductive property degradation.
机译:为了防止空间环境下航天器差动表面充电引起的ESD的不利影响,ITO透明导电涂层通常沉积在航天器外的热控制材料上。由于ITO涂层暴露在太空环境中,因此对ITO涂料的电产的环境影响深入了解航天器的设计者。本文介绍了地面试验,以模拟ITO涂层导电性能的空间辐射环境影响。样品由ITO / OSR,ITO / KAPTON / AL和ITO / FEP / AG热控制涂层制成。模拟空间辐射环境条件为500孔,40keV电子为2×10〜(16)E / cm〜2,40 kev质子为2.5×10〜(15)p / cm〜2。导电性是在真空中原位测量的表面电阻率。试验结果证明,所有ITO涂层的表面电阻率在环境试验开始时突然减少。它可能是由真空引起的氧空位和腐烂的辐射引起的RIC。发现了由辐射引起的导电性能的降解。 ITO / FEP / AG表现出比其他两种更多的降解。 ITO / Kapton / Al的导电性能稳定真空辐照。 SEM和XPS的分析发现更多的饼干和较少的SN和浓度在照射后,可能是导电性能降解的原因。

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