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Design of a Multifunctional Spacecraft Structure Using Plastic Lithium-Ion Batteries

机译:使用塑料锂离子电池设计多功能航天器结构

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摘要

The technology of multifunctional structures, when applied to spacecraft batteries, allows mass and volume to be saved through the removal of parasitic components of the battery. Electrochemical cells, in this case commercially available cells of the plastic lithium-ion type, may be incorporated directly into structural sandwich panels, removing the need for a secondary structure (i.e. the battery enclosure and its interface) to mount the cells. Placing the cells within the structure also removes them from the bus, reducing its volume and thus further reducing overall mass. Notwithstanding the relatively low mechanical properties exhibited by the batteries that have been investigated during our work, this paper shall demonstrate how, by optimizing the layout of the cells within a panel, adequate structural performance may be maintained. Copyright © 2008 by the American Institute of Aeronautics and Astronautics, Inc.
机译:当应用于航天器电池时,多功能结构技术允许通过去除电池的寄生成分来节省质量和体积。在这种情况下,电化学电池在这种情况下,塑料锂离子型的市售电池可以直接掺入结构夹层板中,从而消除对次结构(即电池外壳及其界面)的需要安装电池。将细胞放置在结构内也从总线中除去它们,降低其体积,从而进一步降低整体质量。尽管在我们的工作期间已经调查的电池表现出的相对较低的机械性能,但本文应通过优化面板内的电池布局,维持足够的结构性能,展示如何。版权所有©2008由美国航空公司和宇航员Inc。

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