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Self-Deployable Geometries for Space Applications

机译:用于空间应用的可自行部署的几何

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Variable-geometry structures are useful in aerospace applications because they are deployable, from a compact configuration (launch phase) to a spread geometry (operational phase). They may also benefit from the use of flexible joints, which store elastic energy for automatic deployment. Following the development of a self-deploying antenna frame structure with scissors, the geometrical configuration of a new kind of structure, simpler, lighter, and minimizing mechanical joints between elements, is proposed in this article. This topology can form a three-dimensional structure when partially opened or a planar structure when fully deployed. The applications concern autotensioning structures such as meshed space antenna, deorbiting sails, and also solar panel support structures.
机译:可变几何结构在航空航天应用中很有用,因为它们是可部署的,从紧凑的配置(启动阶段)到扩展的几何结构(运行阶段)。它们还可以受益于使用柔性接头,该接头存储弹性能量以进行自动部署。随着使用剪刀的自展开天线框架结构的发展,本文提出了一种新型的几何结构,这种结构的结构更简单,更轻并且将元素之间的机械连接减到最少。当部分打开时,此拓扑可以形成三维结构,而在完全展开时,则可以形成平面结构。这些应用涉及自动张紧结构,例如网状空间天线,去轨帆以及太阳能电池板支撑结构。

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