Flexoelectric Metamaterials Design Based on Anti-Trichiral Structure

17 Pages Posted: 10 Jan 2025

See all articles by Hui Jiang

Hui Jiang

Beijing Institute of Technology

Tianhao Lu

Beijing Institute of Technology

Tingjun Wang

Beijing Institute of Technology

Zewei Hou

Beijing Institute of Technology

Xueyun Wang

Beijing University of Technology

Yingzhuo Lun

Beijing Institute of Technology

Jiawang Hong

Beijing Institute of Technology

Abstract

Flexoelectricity is characterized by the polarization in response to strain gradients. Since the flexoelectric effect is not restricted by crystalline symmetry and exists in all dielectrics, flexoelectric metamaterials offer a promising approach to achieve apparent piezoelectricity in non-piezoelectric materials through structural design. In this work, a bending-dominated anti-trichiral structure is utilized to design a flexoelectric metamaterial. Theoretical analysis and finite element simulations reveal that external axial compression enable the rotation of solid cylinders and consequently leads to a bending deformation in ligaments. The superposition of the flexoelectric charges of the bent ligaments makes the anti-trichiral structure exhibit apparent piezoelectricity. The effective piezoelectric coefficient is theoretically predicted to exceed 3000 pC/N by optimizing the structural parameters, such as reducing the ligament thickness to hundreds of micrometers. Resin- and unpoled lead zirconium titanate-based metamaterials are fabricated by 3D printing and laser cutting, respectively. Both specimens exhibit apparent piezoelectricity subjected to axial dynamic loads. The measured piezoelectric coefficient is consistent with the theoretical predictions, verifying the design strategy. This work offers insights into the design of flexoelectric metamaterials and highlights the potential of mechanical metamaterials for high-performance sensing and energy harvesting applications utilizing the flexoelectric effect.

Keywords: flexoelectricity, metamaterials, anti-trichiral structure, strain gradient, structural design

Suggested Citation

Jiang, Hui and Lu, Tianhao and Wang, Tingjun and Hou, Zewei and Wang, Xueyun and Lun, Yingzhuo and Hong, Jiawang, Flexoelectric Metamaterials Design Based on Anti-Trichiral Structure. Available at SSRN: https://ssrn.com/abstract=5092252 or http://dx.doi.org/10.2139/ssrn.5092252

Hui Jiang

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Tianhao Lu

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Tingjun Wang

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Zewei Hou

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Xueyun Wang

Beijing University of Technology ( email )

100 Ping Le Yuan
Chaoyang District
Beijing, 100020
China

Yingzhuo Lun

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Jiawang Hong (Contact Author)

Beijing Institute of Technology ( email )

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