Design and Modeling of a Non-Flat Foldable Tubular Kirigami With Compliant Joints

Author:

Ye Siyuan1,Zhao Pengyuan23,Li Shiyao1,Kavousi Fatemeh1,Hao Guangbo1

Affiliation:

1. University College Cork School of Engineering and Architecture, , Cork T12 K8AF , Ireland

2. University College Cork School of Engineering and Architecture, , Cork T12 K8AF , Ireland ;

3. Shenyang Institute of Automation Chinese Academy of Sciences, , Shenyang 110016, Liaoning , China

Abstract

Abstract This paper applies the kirigami technique to a non-rigid foldable tubular origami to make a rigid foldable tubular design, i.e., a radially closable kirigami (RC-kiri). The laminar emergent torsional (LET) compliant joint is applied to surrogate the crease, which makes the design applicable in practical engineering applications. By incorporating a non-flat folding design, the folding angles of each crease are minimized, leading to a reduction in the strain exerted on engineering materials. The kinetostatic theoretical model is constructed using the principle of virtual work, and its results are compared with those obtained from a simulation model in finite element analysis (FEA). A 3D printed physical model is tested to obtain the relationship between forces and displacements. FEA and experimental results match with theoretical findings. This study builds a bridge between origami and kirigami and expands the application of LET joints to the fabrication of tubular kirigami.

Funder

China Scholarship Council

Publisher

ASME International

Subject

Mechanical Engineering

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