Thick Folding Through Regionally-Sandwiched Compliant Sheets

Jared Butler, Nathan A. Pehrson, S. Magleby
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引用次数: 1

Abstract

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. Physical models of a simple single fold mechanism and a degree-four vertex mechanism are presented to demonstrate the ReCS technique using acrylic panels and spring steel. 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.
厚折叠通过区域夹心柔性片
在这项工作中提出的柔性片的区域夹心(ReCS)技术创造了可平折、刚性可折叠和自展开的厚折纸机制。柔性薄片的区域夹心用于为每个顶点的折叠创建山/谷分配,将运动限制在单个折叠分支上。挠曲柔性构件中的应变能用于实现自展开。这项工作提出了使用ReCS技术设计折纸机制的方法,包括在柔性薄片和夹层中使用的面板的顶点处进行体积修剪。给出了简单单折机构和四度顶点机构的物理模型,以证明采用亚克力板和弹簧钢的ReCS技术。考虑了由于寄生运动而产生的柔性薄板的屈服风险,并通过减小薄板的厚度来减小屈服的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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