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DESIGN AND FREEFORM FABRICATION OF DEPLOYABLE STRUCTURES WITH LATTICE SKINS

机译:使用晶格皮带的可展开结构的设计和自由形式制造

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Frontier environments-such as battlefields, hostile territories, remote locations, or outer space-drive the need for lightweight, deployable structures that can be stored in a compact configuration and deployed quickly and easily in the field. We introduce the concept of lattice skins to enable the design, solid freeform fabrication (SFF), and deployment of customizable structures with nearly arbitrary surface profile and lightweight multi-functionality. Using Duraform FLEX? material in a selective laser sintering machine, large deployable structures are fabricated in a nominal build chamber by either virtually collapsing them into a condensed form or decomposing them into smaller parts. Before fabrication, lattice sub-skins are added strategically beneath the surface of the part. The lattices provide elastic energy for folding and deploying the structure or constrain expansion upon application of internal air pressure. Nearly arbitrary surface profiles are achievable and internal space is preserved for subsequent usage. In this paper, we present the results of a set of experimental and computational models that are designed to provide proof of concept for lattice skins as a deployment mechanism in SFF and to demonstrate the effect of lattice structure on deployed shape.
机译:前沿环境 - 诸如战场,敌对领土,远程位置,或外层空间驱动对于可以被存储在一个紧凑的结构并在现场快速而方便地部署轻量级,可部署的结构的需要。介绍格子外观的概念,使设计,实体自由成形制造(SFF)和可定制的结构的部署,几乎任意表面轮廓和轻巧的多功能性。使用Duraform FLEX?在选择性激光烧结机材料,大型可展开结构在标称构建室由任一几乎压扁它们变成稠的形式或它们分解成较小的部分制造。制造之前,晶格子蒙皮的部分的表面之下加入战略。格子用于折叠并在内部空气压力的应用部署的结构或约束膨胀提供弹性能。几乎任意表面轮廓是可以实现的和内部的空间被保留供以后使用。在本文中,我们提出了一组实验和计算模型,旨在为格皮肤在SFF展开机构提供概念验证,并证明在展开形状中晶格结构的影响的结果。

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