4.7 Article

Design of deployable curved-surface rigid origami flashers

Journal

MECHANISM AND MACHINE THEORY
Volume 167, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.mechmachtheory.2021.104512

Keywords

Origami flashers; Curved-surface origami; Rigid origami; Thickness-accommodation

Funding

  1. National Natural Science Foundation of China [51835002, 52075113]
  2. Shenzhen Research and Development Program of China [JCYJ20200109112818703]

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This paper introduces a method for designing rigid origami flashers for deployment on curved surfaces, utilizing parallel projection principles and numerical methods to obtain vertices, then transforming them into rigid panels using flexible and elastic hinges. The feasibility of the approach is verified through numerical simulations and physical prototypes, providing convenience for its application in space engineering.
This paper proposes an approach to designing rigid origami flashers that can be deployed onto curved-surface configurations. The method of designing planar origami flashers that can be wrapped around regular polygonal central hubs is presented. Based on the principle of parallel projection, planar origami flashers are projected onto target spherical surfaces to obtain the vertices on the boundary creases between sections of adjacent origami flashers. The geometric relationships of thin-panel curved origami flashers are established in terms of foldability, and other vertices in each section are calculated using numerical methods. Flexible and elastic hinges modify the thin-panel curved origami flashers into thick-panel rigid flashers. The thick rigid panels maintain the shape of flashers, and the flexible creases treated using thicknessaccommodating methodologies are used to maintain the foldability of the thick panels. Additionally, we analysed the parameters that affect the accuracy of the surface fitting. The feasibility of the proposed approach is verified using numerical simulations and physical prototypes. The novel designing of deployable curved-surface rigid origami flashers facilitates their potential applicability in solid surface antennas, surface reflectors, and other space engineering applications.

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