Designing Fractal Origami Tessellations Through Eigen Analysis

K. Fuchi, A. Gillman, Alexander Cook, Alexander M. Pankonien, P. Buskohl
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Abstract

This article investigates a method of designing fractal origami tessellations through eigen analysis. Foldable structures with hierarchical geometric features could be beneficial in applications where a graded functionality is desired. A representative unit in an origami tessellation is modeled as networked truss elements with torsional springs at fold lines. Eigen analysis and nonlinear mechanics analysis of the representative unit with fractal boundary conditions reveal the foldability of a given fractal origami crease pattern out of its flat state. This configuration can be used to construct a folded fractal origami tessellation with a desired number of fractal levels, which can then be used to evaluate its functional merit. The design process is demonstrated for the design of a fractal origami tessellation with tailored boundary shape change (from rectangular to trapezoidal) through folding, that could be used as an enabling mechanism for an adaptive wing section.
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基于特征分析的分形折纸镶嵌设计
本文研究了一种利用特征分析设计分形折纸镶嵌的方法。具有分层几何特征的可折叠结构在需要分级功能的应用中是有益的。将折纸镶嵌中的一个代表性单元建模为在折线处具有扭转弹簧的网状桁架单元。对具有分形边界条件的代表性单元进行特征分析和非线性力学分析,揭示了给定分形折纸折痕图在平面状态下的可折叠性。这种结构可用于构造具有所需数量的分形层次的折叠分形折纸镶嵌,然后可用于评估其功能优点。设计过程演示了分形折纸镶嵌的设计过程,通过折叠可定制边界形状变化(从矩形到梯形),可作为自适应翼截面的启用机制。
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