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May 9, 2026Small1 citationsOpen Access

Ultrahigh Stiffness and Energy Absorption Properties of Isotropic Metallic Closed Cell Microlattices

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DLDominic Kang Jueh LimCLChang Quan Lai

Key Points

  • The research aims to explore the stiffness and energy absorption properties of metallic closed cell microlattices.
  • Investigated material attributes under stress conditions.
  • Assessed energy absorption efficiencies up to 44% and stresses up to 410 MPa.
  • Analyzed the role of material work hardening in enhancing performance.
  • Achieved energy absorption efficiency of 44%, indicating significant energy management capabilities.
  • Stresses reached 410 MPa, aligning peak performance with elastic limits.
  • Material work hardening increased the plateau stress during failure, enhancing stiffness characteristics.

Abstract

) and energy absorption efficiencies up to 44%, at stresses as high as 410 MPa. Material work hardening is key to this breakthrough performance, as it raised the plateau stress of the plate buckling failure to approximately the same level as the stretch-dominated elastic limit, which allowed ultrahigh stiffness to be united with excellent energy absorption characteristics in these mechanical metamaterials.

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Cite This Study

Lim et al. (2026) studied this question.

synapsesocial.com/papers/69fed021b9154b0b82877324https://doi.org/10.1002/smll.73694
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