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DYNAMIC MODELING AND ANALYSIS OF STRAIN ENERGY AND CENTRIFUGAL FORCE DEPLOYMENT OF AN ORIGAMI FLASHER

机译:折纸闪光灯应变能量和离心力部署的动态建模与分析

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Recent research in the field of origami-inspired engineering has seldom considered dynamic analysis of such structures. In this paper, a dynamic model of a flasher (an origami base that packs into a 3D structure that radially deploys completely flat) is created using multi-body dynamic (MBD) simulation software. This model is deployed by two different methods: strain energy and centrifugal force. The MBD model is created automatically by a series of scripts that transform a crease pattern into a fully defined engineering model. The primary focus is to investigate the deployment time, force and torque distribution in the entire structure, bending angle of the panels, and rigid foldability, through parametric studies of the general flasher parameters. The results may help in flasher design decisions where flasher patterns are applicable such as future star occulter designs, solar arrays, and solar sails. Furthermore, the method is general and creates a groundwork for dynamic analysis of other origami structures.
机译:折纸启发工程领域最近的研究很少考虑对这种结构的动态分析。本文使用多体动态(MBD)仿真软件,创建了一种闪光灯的动态模型(包装到完全平整的3D结构中的折纸基础)。该模型由两种不同的方法部署:应变能量和离心力。 MBD模型由一系列脚本自动创建,该脚本将折痕模式转换为完全定义的工程模型。主要焦点是通过普通闪光灯参数的参数研究研究整个结构,弯曲角度,弯曲角度和刚性可折叠性的展开时间,力和扭矩分布。结果可能有助于闪光灯设计决策,其中闪光灯图案适用,例如未来的明星 - 太阳能阵列和太阳能帆。此外,该方法是通用的,并且为其他折纸结构的动态分析创造了基础。

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