Publication | Closed Access
Reentrant Origami-Based Metamaterials with Negative Poisson’s Ratio and Bistability
471
Citations
22
References
2015
Year
EngineeringNegative-index MetamaterialMechanical EngineeringOrigami MetamaterialsMetasurfacesMetamaterialsFoldable StructureSoft MatterElectromagnetic MetamaterialsMechanical MetamaterialsReentrant 3DMechanicsMaterials ScienceUnique Mechanical PropertiesDeployable StructureMaterial MechanicsReentrant Origami-based MetamaterialsFlexible ElectronicsSelf-assemblyApplied PhysicsDynamic MetamaterialsFunctional Materials
We investigate the unique mechanical properties of reentrant 3D origami structures based on the Tachi-Miura polyhedron (TMP). We explore the potential usage as mechanical metamaterials that exhibit tunable negative Poisson's ratio and structural bistability simultaneously. We show analytically and experimentally that the Poisson's ratio changes from positive to negative and vice versa during its folding motion. In addition, we verify the bistable mechanism of the reentrant 3D TMP under rigid origami configurations without relying on the buckling motions of planar origami surfaces. This study forms a foundation in designing and constructing TMP-based metamaterials in the form of bellowslike structures for engineering applications.
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