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Design and quasi-static compression responses of auxetic metamaterials based on re-entrant hexagonal structure with two-step deformation mode

  • Peixin Yue
  • , Danyang Wang
  • , Zishun Liu*
  • *此作品的通讯作者
    • Xi'an Jiaotong University

    科研成果: 期刊稿件会议文章同行评审

    摘要

    A novel, multi-step deformation auxetic metamaterial is proposed. Through an extensive study of unit cells, designed by overlapping two re-entrant hexagonal cells and optimizing the distribution of transverse rods, we identified a double re-entrant hexagon with a vertical strut (DRHVS) as the optimal configuration. This configuration exhibits a distinct two-step deformation mode and dual-plateau stress characteristics. A theoretical model was developed to predict plateau stress based on energy conservation and plastic hinge dissipation for the proposed DRHVS structure. Numerical simulations were conducted to analyze the quasi-static response and deformation mechanisms of a honeycomb structure composed of DRHVS unit cells. A parametric study was performed on the key dimensions, and the mechanical properties under different impact velocities were evaluated. Finally, the mechanical properties of DRHVS were compared with those of other re-entrant auxetic structures. The results indicate that DRHVS exhibits outstanding energy absorption capacity and impact resistance. This study expands the design framework of auxetic metamaterials for high-performance, multi-step deformation structures in impact-resistant applications.

    源语言英语
    文章编号012065
    期刊Journal of Physics: Conference Series
    3043
    1
    DOI
    出版状态已出版 - 2025
    活动8th International Conference on Mechanical, Electrical and Material Application, MEMA 2025 - Shenyang, 中国
    期限: 28 3月 202530 3月 2025

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