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POSS-polyimide nanocomposite films: Simulated hypervelocity space debris and atomic oxygen effects

机译:POSS-聚酰亚胺纳米复合薄膜:模拟超高速空间碎片和原子氧效应

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摘要

The combined effect of hypervelocity space debris impact and atomic oxygen (AO) attack on the degradation of reinforced polyhedral oligomeric silsesquioxanes (DOSS)-polyimide films was studied. A laser-driven flyer (LDF) system was used to accelerate aluminum flyers to impact velocities of up to 3 km s(-1). The impacted films were exposed to an RF-plasma source, which was used to simulate the effect of AO in the low Earth orbit. Scanning electron microscopy (SEM) was used to characterize the fracture morphology. The extent of damage in POSS-polyimide impacted films was found to be much smaller compared to POSS-free films, insinuating on a toughening mechanism developed due to POSS incorporation. When exposed to air RF-plasma, the impacted POSS-free film revealed a synergistic effect associated with a large increase in the erosion rate while impacted POSS-containing samples showed improved erosion resistance. The increased erosion rate of the impacted POSS-free film is explained by formation of residual stresses that affect the oxidation mainly by increasing the diffusivity of oxygen.
机译:研究了超高速空间碎片撞击和原子氧(AO)侵蚀对增强多面体低聚倍半硅氧烷(DOSS)-聚酰亚胺薄膜降解的综合影响。激光驱动飞行器(LDF)系统用于加速铝制飞行器,以冲击最高3 km s(-1)的速度。受影响的胶片暴露于RF等离子体源,该源用于模拟AO在低地球轨道上的作用。扫描电子显微镜(SEM)用于表征断裂形态。发现与无POSS的膜相比,POSS-聚酰亚胺冲击的膜的破坏程度要小得多,这是由于由于掺入了POSS而产生的增韧机理。当暴露于空气RF等离子体中时,无POSS的受冲击薄膜显示出协同效应,与腐蚀速率的大幅提高相关,而含POSS的受冲击样品则显示出更好的抗腐蚀能力。受到冲击的无POSS薄膜的增加的腐蚀速率是通过形成残余应力来解释的,该残余应力主要通过增加氧气的扩散率来影响氧化。

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