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Outgassing studies on thermal control coatings for micro-satellites

机译:微卫星热控涂层除气研究

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摘要

Purpose - With the advent of micro-satellites technology, passive thermal controls in the form of surface coatings have become important for onboard thermal management. The thermal coatings, however, suffer outgassing and mass loss due to their direct exposure to harsh thermal environment and high vacuum in space. The purpose of this paper is to discuss testing and evaluation on outgassing of AA6061-T6 specimen surfaces treated with various types of anodized coatings of different thicknesses and the related mass loss before and after thermal exposure. Design/methodology/approach - Samples of chromic acid, polytetrafluroethylene polymer, and black- and brown-colour anodized aluminum coupons were subjected to high vacuum (~1 × 10~(-6) mbar), before and after thermal baking at 120℃. Spectrum analysis of the outgassed material to know their quantities and proportion was conducted subsequently using a Quadrupole mass analyzer. Findings - The surface coatings under study complied with the spacecraft requirements for the mass loss of less than 1 percent of the total mass of the coating material used for that surface. The mass spectrum analysis of the outgassed material indicated that the majority of the coating mass loss was on account of water vapours and organic solvents like ethylene. Practical implications - These results provided a good insight into the reliability of the coating materials studied and the bonding between the aluminum substrates and the coatings. Originality/value - The coatings and the technology needed for their application on aluminum are readily available. The present work on outgassing and mass loss in a simulated space environment will provide useful insight on their usage for micro-satellites.
机译:目的-随着微卫星技术的出现,表面涂层形式的无源热控制已成为机载热管理的重要组成部分。但是,由于热涂层直接暴露于恶劣的热环境和空间中的高真空下,因此它们会产生脱气和质量损失。本文的目的是讨论测试和评估AA6061-T6试样表面脱气的情况,该试样表面经过各种类型的厚度不同的阳极氧化涂层处理,以及热暴露前后的相关质量损失。设计/方法/方法-将铬酸,聚四氟乙烯聚合物以及黑色和棕色阳极氧化的铝试样放在高真空(〜1×10〜(-6)mbar)的温度下进行120℃的热烘烤前后。随后使用四极杆质量分析仪对除气后的物料进行光谱分析,以了解其数量和比例。发现-研究中的表面涂层符合航天器的要求,其质量损失小于该表面所用涂层材料总质量的1%。脱气材料的质谱分析表明,大部分涂层质量损失是由于水蒸气和有机溶剂(如乙烯)造成的。实际意义-这些结果为所研究的涂料的可靠性以及铝基材与涂料之间的粘结提供了很好的见解。原创性/价值-易于在铝上应用的涂料和技术。目前在模拟空间环境中的除气和质量损失方面的工作将为微卫星的使用提供有用的见解。

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