首页> 外文会议>The 2003 International Solar Energy Conference Mar 15-18, 2003 Kohala Coast, Hawall >ELECTRON EXPOSURE MEASUREMENTS OF CANDIDATE SOLAR SAIL MATERIALS
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ELECTRON EXPOSURE MEASUREMENTS OF CANDIDATE SOLAR SAIL MATERIALS

机译:扁桃体帆板材料的电子暴露测量

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Solar sailing is a unique form of propulsion where a spacecraft gains momentum from incident photons. Since sails are not limited by reaction mass, they provide continual acceleration, reduced only by the lifetime of the lightweight film in the space environment and the distance to the Sun. Practical solar sails can expand the number of possible missions that are difficult by conventional means. The National Aeronautics and Space Administration's Marshall Space Flight Center (MSFC) is concentrating research into the utilization of ultra lightweight materials for spacecraft propulsion. Solar sails are generally composed of a highly reflective metallic front layer, a thin polymeric substrate, and occasionally a highly emissive back surface. The Space Environmental Effects Team at MSFC is actively characterizing candidate sails to evaluate the thermo-optical and mechanical properties after exposure to electrons. This paper will discuss the preliminary results of this research.
机译:太阳航行是一种独特的推进方式,航天器从入射光子中获得动量。由于帆不受反作用质量的限制,因此它们可提供持续的加速度,仅由于轻质薄膜在太空环境中的寿命以及与太阳的距离而减小。实用的太阳帆可以扩大通过常规方式难以完成的可能任务的数量。美国国家航空航天局的马歇尔太空飞行中心(MSFC)致力于将超轻质材料用于航天器推进的研究。太阳帆通常由高反射率的金属前层,薄的聚合物基材以及偶尔的高发射性背面组成。 MSFC的太空环境影响小组正在积极描述候选帆的特性,以评估暴露于电子后的热光学和机械性能。本文将讨论这项研究的初步结果。

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