Rotating coupling of chiral identical twins in multimodal Kresling metamaterials for achieving ultra-high energy absorption
Author(s): |
Haiying Yang
Dong-Wei Shu Haibao Lu Ran Tao |
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Medium: | journal article |
Language(s): | English |
Published in: | Smart Materials and Structures, 7 June 2024, n. 7, v. 33 |
Page(s): | 075002 |
DOI: | 10.1088/1361-665x/ad4e22 |
Abstract: |
Origami structures have been widely applied for various engineering applications due to their extraordinary mechanical properties. However, the relationship between in-plane rotating coupling and energy absorption of these Origami structures is seldom studied previously. The study proposes a design strategy that utilizes identical-twin rotation (i.e. simultaneous rotation with the same chirality) and fraternal-twin rotation (i.e. simultaneous rotation with the opposite chirality) of Kresling metamaterials to achieve multimodal rotation coupling and enhanced energy absorption. Deformation mode and energy absorption properties of 3D-printed Kresling metamaterials have been studied using both quasi-static compression tests and finite element analysis. Furthermore, effects of polygon units and their connections to 2D and 3D arrangements, which generate 4 × 4 arrays and 2 × 2 × 2 arrays, have been investigated to identify the optimized structures for achieving ultra-high energy absorption of chiral Kresling metamaterials. Results showed that rotating coupling of chiral identical twins in multimodal Kresling metamaterials possesses diverse deformation patterns and ultra-high energy absorption. This study provides a novel strategy to optimize structural designs and mechanical properties of the Kresling metamaterials. |
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data sheet - Reference-ID
10783926 - Published on:
20/06/2024 - Last updated on:
20/06/2024