Folding of Thick Origami Through Regionally Sandwiched Compliant Sheets
Author(s) -
Jared Butler,
Nathan A. Pehrson,
Spencer P. Magleby
Publication year - 2019
Publication title -
journal of mechanisms and robotics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.591
H-Index - 45
eISSN - 1942-4310
pISSN - 1942-4302
DOI - 10.1115/1.4045248
Subject(s) - compliant mechanism , trimming , vertex (graph theory) , folding (dsp implementation) , mechanism (biology) , hinge , structural engineering , spring (device) , mechanical engineering , materials science , engineering , computer science , finite element method , physics , graph , theoretical computer science , quantum mechanics
The regional sandwiching of compliant sheets (ReCS) technique presented in this work creates flat-foldable, rigid-foldable, and self-deploying thick origami-based mechanisms. Regional sandwiching of the compliant sheet is used to create mountain-valley assignments for each fold about a vertex, constraining motion to a single branch of folding. Strain energy in deflected flexible members is used to enable self-deployment. This work presents the methods to design origami-based mechanisms using the ReCS technique, including volume trimming at the vertex of the compliant sheet and of the panels used in the sandwich. Three physical models, a simple single fold mechanism, a degree-four vertex mechanism, and a full tessellation, are presented to demonstrate the ReCS technique using acrylic panels with spring and low-carbon steels. Consideration is given to the risk of yielding of the compliant sheet due to parasitic motion with possible mitigation of yielding by decreasing the thickness of the sheet.
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