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Shape Morphing Metamaterials

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arxiv 2501.14804 v1 pith:PE3JKZ7N submitted 2025-01-14 physics.app-ph cond-mat.mtrl-sci

Shape Morphing Metamaterials

classification physics.app-ph cond-mat.mtrl-sci
keywords metamaterialsdesignshapecomplexgeometricmorphingshape-morphingability
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Mechanical metamaterials leverage geometric design to achieve unconventional properties, such as high strength at low density, efficient wave guiding, and complex shape morphing. The ability to control shape changes builds on the complex relationship between geometry and nonlinear mechanics, and opens new possibilities for disruptive technologies across diverse fields, including wearable devices, medical technology, robotics, and beyond. In this review of shape-morphing metamaterials, we examine the current state of the field and propose a unified classification system for the mechanisms involved, as well as the design principles underlying them. Specifically, we explore two main categories of unit cells-those that exploit structural anisotropy or internal rotations-and two potential approaches to tessellating these cells: based on kinematic compatibility or geometric frustration. We conclude by discussing the available design tools and highlighting emerging challenges in the development of shape-morphing metamaterials.

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