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Carbon Nanotube/Conductive Additive/Space Durable Polymer Nanocomposite Films for Electrostatic Charge Dissipation

机译:用于静电消散的碳纳米管/导电添加剂/空间耐用聚合物纳米复合薄膜

摘要

Thin film membranes of space environmentally stable polymeric materials possessing low color/solar absorptivity (alpha) are of interest for potential applications on Gossamer spacecraft. In addition to these properties, sufficient electrical conductivity is required in order to dissipate electrostatic charge (ESC) build-up brought about by the charged orbital environment. One approach to achieve sufficient electrical conductivity for ESC mitigation is the incorporation of single wall carbon nanotubes (SWNTs). However, when the SWNTs are dispersed throughout the polymer matrix, the nanocomposite films tend to be significantly darker than the pristine material resulting in a higher alpha. The incorporation of conductive additives in combination with a decreased loading level of SWNTs is one approach for improving alpha while retaining conductivity. Taken individually, the low loading level of conductive additives and SWNTs is insufficient in achieving the percolation level necessary for electrical conductivity. When added simultaneously to the film, conductivity is achieved through a synergistic effect. The chemistry, physical, and mechanical properties of the nanocomposite films will be presented.
机译:具有低颜色/太阳能吸收率(α)的空间环境稳定聚合物材料的薄膜薄膜对于Gossamer航天器的潜在应用很感兴趣。除了这些特性,还需要足够的电导率,以消除由带电轨道环境引起的静电荷(ESC)堆积。一种获得足够的电导率以缓解ESC的方法是引入单壁碳纳米管(SWNT)。然而,当SWNT分散在整个聚合物基质中时,纳米复合膜往往比原始材料暗得多,从而导致较高的α。结合导电添加剂并降低SWNT的负载量是一种在保持导电性的同时提高α值的方法。单独考虑,导电添加剂和单壁碳纳米管的低负载水平不足以实现电导率所需的渗透水平。当同时添加到薄膜中时,可通过协同作用获得导电性。将介绍纳米复合膜的化学,物理和机械性能。

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