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Development of efficient and cost-effective spacecraft structures based on honeycomb panel assemblies

机译:基于蜂窝面板组件的高效和经济高效的航天器结构的开发

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摘要

Due to their high strength to weight ratio and stiffness to weight ratio the use of honeycomb panels is particularly attractive in spacecraft structures. Honeycomb panels are often used in secondary satellite structures such as equipment platforms and solar arrays, but they can also be used as part of the primary structure of a satellite. Indeed honeycomb panel assemblies can be, and are, used to produce efficient and cost-effective primary structures. These types of structures have been used for some time for numerous satellites; however, their development still poses some challenges ranging from the structural performance of the panels themselves to the problem of connecting them to other panels or structural elements. These challenges are faced each time a new satellite is being developed adding cost to the design process. Furthermore, often due to strict timescales in the development process, some of the uncertainties which naturally arise from these challenges cannot always be completely addressed. To compensate for this, conservative design approaches often need to be taken with the ultimate effect of lowering the efficiency of the structure's final design. To meet these challenges and provide a better knowledge base for future satellite development projects a number of research activities have been, and are still, under way at the University of Southampton. The aim of this paper is to describe these research activities and present the key results. ©2010 IEEE.
机译:由于它们的高强度 - 重量比和刚性 - 重量比使用蜂窝板是在航天器结构的特别有吸引力的。蜂窝板通常在辅助卫星结构,如设备平台和太阳能电池阵列使用,但它们也可以被用作卫星的主结构的一部分。事实上蜂窝面板组件可以是,并且,用于产生高效和成本有效的初级结构。这些类型的结构已经使用了一段时间,众多卫星;然而,他们的发展还带来了一些挑战,从自身面板的结构性能,以将它们连接到其它面板或结构部件的问题。每一个新的卫星正在开发增加成本的设计流程时,这些挑战都面临。此外,往往由于在发展过程中严格的时间表,其中一些来自这些挑战自然会出现不能永远是不确定性的彻底解决。为了弥补这一点,保守的设计方法通常需要与降低结构的最终设计效率的最终效果进行拍摄。为了应对这些挑战,并在南安普敦大学为未来的卫星开发项目的一些研究活动已经和仍然是一个较好的知识基础,正在进行中。本文的目的是描述这些研究活动和提出的主要结果。 ©2010 IEEE。

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