JOURNAL ARTICLE

A novel 3D re-entrant unit cell structure with negative Poisson’s ratio and tunable stiffness

Dong LiRuicong GaoLiang DongWing‐Kai LamFengpeng Zhang

Year: 2019 Journal:   Smart Materials and Structures Vol: 29 (4)Pages: 045015-045015   Publisher: IOP Publishing

Abstract

Abstract: In this paper, a novel three-dimensional (3D) unit cell structure with butterfly-like perforations was designed, and negative Poisson’s ratio and tunable stiffness were achieved in such a geometry. The Poisson’s ratio and strain-stress relationship of structures with different geometric parameters were determined using the finite element method (FEM). Samples with identical geometric variables to those of finite element models were fabricated via 3D printing technique, and their Poisson’s ratios and stress–strain relationships were experimentally determined and compared with the FEM results. Results showed that the proposed 3D cellular structures exhibit negative Poisson’s ratios, and a minimal value of −0.7091 could be reached. The stress–strain curve of each structure exhibited three distinct stages (elastic response, rib buckling and self-contact), with different elastic moduli being observed at each stage, and demonstrated a tunable range of the compressive stiffness ratio between stages varying from 0.1866 to 1.4006(tunable stiffness), as determined by FEM analysis. Good agreement was found between the experimental results and FEM predictions. The design concept can be implemented and optimized for specific applications via geometric parameters manipulation.

Keywords:
Poisson's ratio Finite element method Stiffness Poisson distribution Materials science Stress (linguistics) Moduli Structural engineering Geometry Composite material Mathematics Engineering Physics Statistics

Metrics

80
Cited By
6.99
FWCI (Field Weighted Citation Impact)
31
Refs
0.98
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Cellular and Composite Structures
Physical Sciences →  Engineering →  Mechanical Engineering
Advanced Materials and Mechanics
Physical Sciences →  Engineering →  Mechanical Engineering
Polymer composites and self-healing
Physical Sciences →  Materials Science →  Polymers and Plastics

Related Documents

JOURNAL ARTICLE

Strong re-entrant cellular structures with negative Poisson’s ratio

Dong LiJianhua YinLiang DongRoderic S. Lakes

Journal:   Journal of Materials Science Year: 2017 Vol: 53 (5)Pages: 3493-3499
JOURNAL ARTICLE

A new three-dimensional re-entrant negative Poisson's ratio metamaterial with tunable stiffness

Fangyi LiQiang ZhangZijie WangDachang Zhu

Journal:   Engineering Structures Year: 2024 Vol: 306 Pages: 117793-117793
JOURNAL ARTICLE

Impact resistance of a double re-entrant negative poisson’s ratio honeycomb structure

Hong HaiChenfeng ChenWei Min WangWeikai Xu

Journal:   Physica Scripta Year: 2023 Vol: 99 (2)Pages: 025919-025919
JOURNAL ARTICLE

Energy Absorption of an Re-Entrant Honeycombs with Negative Poisson’s Ratio

Shu YangChang QiDong Ming GuoDong Wang

Journal:   Applied Mechanics and Materials Year: 2011 Vol: 148-149 Pages: 992-995
© 2026 ScienceGate Book Chapters — All rights reserved.