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GROUND SIMULATION STUDIES OF OUTGASSING PARAMETERS FOR COMMERCIALLY AVAILABLE BLACK PAINTS

机译:商业可用黑漆的外输参数的地面模拟研究

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This work is dedicated to comparative ground simulation studies of black paints and coatings. Some of these materials are already in use in orbiting spacecrafts, mainly in optical systems, while others are considered for such applications. The paints and coatings discussed here are S2, PU1, and PNC manufactured by MAP (France), CV-1148 produced by NuSil (USA), and Acktar Vacuum Black coating developed by Acktar (Israel). S2, PNC, and CV-1148 are silicone-based materials and as such are known to be a threat as a source of contamination; PU1 is based on polyurethane and, therefore, may release hydrocarbons; an Acktar coating is inorganic but highly porous and, therefore, may aggregate fragments from its environment with a potential of desorption and contamination of neighboring parts in vacuum. The experimental evaluation of the paints started from general outgassing tests according to the ASTM E 595 standard to determine total mass loss (TML), collected volatile condensable material (CVCM), and water vapor regained (WVR). Then in situ monitoring of the contaminants by a quartz crystal microbalance (QCM) was performed. It involved the following stages: (a) holding the sample at high temperature while keeping the QCM at low temperature; (b) cooling the sample and keeping it at room temperature without changing the QCM temperature in order to isolate the contaminants re-evaporation process; and ? increasing the QCM temperature to study the effect of the temperature on the re-evaporation kinetics. In addition, chemical identification of the residual contaminants was performed by FTIR spectroscopy. Considerable differences in the outgassing kinetic parameters and contamination potentials were detected between the discussed materials. For example, the Acktar coating, while having the highest TML shows the lowest contamination potential. The PNC paint is characterized by the shortest outgassing time among the siliconic paints and produces substantially lower mass of contaminants than its predecessor, S2. It has a higher re-evaporation rate of contaminants from the QCM, as well. An analytical model was developed to derive the outgassing and re-emission kinetic parameters from the experimental data.
机译:这项工作致力于黑色油漆和涂料的对比地面模拟研究。这些材料中的某些已经在轨道航天器中使用,主要是在光学系统中,而其他材料则考虑用于此类应用。这里讨论的油漆和涂料是MAP(法国)制造的S2,PU1和PNC,NuSil(美国)制造的CV-1148和Acktar(以色列)开发的Acktar Vacuum Black涂层。 S2,PNC和CV-1148是有机硅基材料,因此已知作为污染源的威胁。 PU1基于聚氨酯,因此可能释放出碳氢化合物; Acktar涂层是无机的,但具有很高的多孔性,因此可能会聚集其周围的碎片,并可能在真空中解吸和污染相邻零件。根据ASTM E 595标准,从一般的脱气测试开始对油漆进行实验评估,以确定总质量损失(TML),收集的挥发性可冷凝物质(CVCM)和重新获得的水蒸气(WVR)。然后通过石英晶体微量天平(QCM)对污染物进行现场监测。它包括以下阶段:(a)将样品保持在高温下,同时将QCM保持在低温下; (b)冷却样品并将其保持在室温而不改变QCM温度,以隔离污染物再蒸发过程;和?增加QCM温度以研究温度对再蒸发动力学的影响。另外,通过FTIR光谱对残留污染物进行化学鉴定。在所讨论的材料之间检测到了除气动力学参数和污染潜能的显着差异。例如,虽然Acktar涂层的TML最高,但污染可能性最低。 PNC漆的特征是硅漆中的脱气时间最短,并且比其前身S2产生的污染物质量要低得多。它还具有更高的QCM污染物再蒸发率。建立了一个分析模型,以从实验数据中得出除气和再排放动力学参数。

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