4.6 Article

Dynamic unfolding process of origami tessellations

Journal

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijsolstr.2021.111075

Keywords

Origami structures; Finite particle method; Particle-bar-spring model; Unfolding process; Dynamic analysis

Categories

Funding

  1. National Key Research and Design Program of China [2017YFC0806100]
  2. Natural Science Foundation of Guangdong, China [2018A030307030]
  3. Science and technology program of Guangdong Province [180917114960497]

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A dynamic analysis framework combining the particle-bar-spring model and finite particle method is proposed in this study for analyzing various origami structures. Simulations and analysis of the dynamic unfolding process of different origami patterns reveal global dynamic response and free unfolding trajectories that have not been presented in previous numerical analysis.
Origami structures have attracted considerable attention from engineering and science fields, and a vari-ety of numerical methods have been proposed for analysis of this kind of structure. Most of the origami-related numerical studies focus on the static or quasi-static analysis of the folding process. However, the dynamic unfolding of origami triggered by the energy stored in the creases could provide us more insight about the origami intrinsic properties. In this study, we propose a dynamic analysis framework in which the particle-bar-spring model and finite particle method are combined. The proposed method can be used in the dynamic analysis of general origami structures, regardless of whether the structure is rigid or non -rigid, and regardless of whether the structure has a single degree of freedom (DOF) or multiple DOFs. The dynamic unfolding process of a simple origami fold, a six-crease waterbomb tube pattern, a Miura pat-tern, and a quadrangular Resch pattern are simulated and analyzed. The energy analysis of the four pat-terns helps to verify the correctness of the proposed method and provides the details for how different energies transform into each other during the unfolding process. The dynamic unfolding analysis reveals the global dynamic response and free unfolding trajectories of these origami structures, which have never been presented by previous numerical analysis. (c) 2021 Elsevier Ltd. All rights reserved.

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