ZM-250521-125157-97fff999fee9ed73.switch from Kirigami-inspired rigid-foldable meta-structure with a bidirectional self-locking property

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Li, Jihui;An, Siqi;Wu, Xinwei;Deng, Dongxuan;Deng, Zichen

Description

Self-locking is an attractive feature in origami structures that enables the foldable structure to withstand loads along the direction of deployment, without requiring extra locking elements. However, this feature is rarely observed in rigid origami because such structures can be easily folded or deployed along the deployment direction. Here, we introduce a novel origami meta-structure with both rigid foldability and bidirectional self-locking capacity based on a kirigami-inspired foldable icosahedron. The kinematic analysis demonstrates that a foldable icosahedron has two motion steps separated by a bifurcation point. By stacking two icosahedra together, we construct a rigid-foldable module capable of bearing both tensile and compressive loads along the direction of deployment. Through energy analysis and prototype experiments, we demonstrate that the bidirectional self-locking phenomenon originates from both the multiple motion steps of a foldable icosahedron and the torsional stiffness of creases. We arrange the module into a planar array and show its potential application in mechanical memory storage devices. This work paves a new way to design rigid-foldable and bidirectional self-locking origami structures.

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Mentions (0)

Metrics

Dataset Index

0.9

FAIR Score

85%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

The Royal Society

License

Creative Commons Attribution 4.0 International

Assigned Domain

Subfield

Materials Chemistry

Field

Materials Science

Domain

Physical Sciences

Confidence Score

41%

Source

Scholar Data Model

Keywords

Mechanical engineering not elsewhere classifiedTheoretical and applied mechanics

Normalization Factors

FT

50.00

CTw

1.00

MTw

1.00