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August 20, 2025Advanced ScienceOpen Access

Cut‐Enabled Mechanical Metamaterials for Multimodal and Reprogrammable Static Nonreciprocity

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Authors

JZJinhao ZhangMinzu University of ChinaSZShuo ZhangHunter CollegeXZXiaofeng ZhouFuyang Normal University

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Overview

This research demonstrates a novel method for creating multiple static nonreciprocal modes in cellular metamaterials, suggesting new applications in soft robotics.

Key Points

  • Static nonreciprocity enables distinct outputs based on action and reaction positions, enhancing mechanical logic design.
  • The design method leverages cuts in metacells to achieve uniaxial and shear nonreciprocal modes, improving functionality.
  • A framework using constitutive tensors describes the multi-modal nonreciprocal behaviors, aiding in understanding mechanical properties.
  • This approach allows for programmable static nonreciprocal responses by controlling cut positions in the metamaterial structure.

Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/68af495fad7bf08b1ead58edhttps://doi.org/10.1002/advs.202503455
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  1. 1Self‐Locking Multistable Metamaterials with Programmable Mechanical Properties and Static Non‐Reciprocity2025
  2. 2Cut-enabled anisotropic and non-reciprocal elasticity in chiral metamaterials2026 · 1 citations
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  4. 4Active Metamaterials with Tunable Shear Nonreciprocity and Nonlinear Dynamics2026
  5. 5Programmable Stimuli-Responsive Mechanical Metamaterials for Information Storage and Logic Processing2025