Issue 2, 2023

3D printing programmable liquid crystal elastomer soft pneumatic actuators

Abstract

Soft pneumatic actuators (SPAs) rely on anisotropic mechanical properties to generate specific motions after inflation. To achieve mechanical anisotropy, additional stiff materials or heterogeneous structures are typically introduced in isotropic base materials. However, the inherent limitations of these strategies may lead to potential interfacial problems or inefficient material usage. Herein, we develop a new strategy for fabricating SPAs based on an aligned liquid crystal elastomer (LCE) by a modified 3D printing technology. A rotating substrate enables the one-step fabrication of tubular LCE-SPAs with designed alignments in three dimensions. The alignment can be precisely programmed through printing, resulting in intrinsic mechanical anisotropy of the LCE. With a specially designed alignment, LCE-SPAs can achieve basic motions—contraction, elongation, bending, and twisting—and accomplish diverse tasks, e.g., grabbing objects and mixing water. This study provides a new perspective for the design and fabrication of SPAs.

Graphical abstract: 3D printing programmable liquid crystal elastomer soft pneumatic actuators

Supplementary files

Article information

Article type
Communication
Submitted
05 Sep 2022
Accepted
24 Nov 2022
First published
05 Dec 2022

Mater. Horiz., 2023,10, 576-584

3D printing programmable liquid crystal elastomer soft pneumatic actuators

W. Liao and Z. Yang, Mater. Horiz., 2023, 10, 576 DOI: 10.1039/D2MH01001A

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