Vollständiger Abstract
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ABSTRACT Liquid crystal elastomers (LCEs) are regarded as promising artificial muscles with potential applications in rehabilitation therapy, robotic systems, and other fields owing to their excellent stimulus responsiveness. However, most studies have focused on the deformation behavior or conventional mechanical properties of LCEs for developing soft devices, with relatively little attention paid to their actuation capabilities. If LCEs can stably generate actuation forces during stimulus‐response processes in macroscopic applications, they could serve as potential alternatives to motors in driving mechanical systems, thereby advancing the development of LCE‐based technologies. Here, we report tough and high‐force‐output liquid crystal elastomers (THFO‐LCE) constructed through an interpenetrating network of polyurethane oligomer and LCE matrices. The THFO‐LCE exhibits exceptional toughness, capable of supporting up to 1.09 × 10 4 times its own weight. The THFO‐LCE sample with a cross‐sectional area of 6.37 mm 2 generates an actuation force of 7.8 N. Its actuation stress (1.2 MPa) remains nearly constant over a cross‐sectional area range of 0.33–6.37 mm 2 . Furthermore, the THFO‐LCEs can propel a model car forward, demonstrating their potential to replace electric motors and highlighting their broad applicability for flexible actuation systems and next‐generation soft robotics.
Bibliografischer Nachweis
Publikationsdaten
- Autor:innen
- Dongning Gao, Hongmiao Tian, Hongquan Pan, Yingze Li, Ruojun Yi, Yawen Shao, Yanan Peng, Qiurui Zhang, Duorui Wang, Xiangming Li, Xiaoliang Chen, Chunhui Wang, Qiguang He, Jinyou Shao
- Quelle
- Advanced Functional Materials
- Publikation
- 2026-01-01
- Band / Ausgabe
- Nicht angegeben
- Seiten
- Nicht angegeben
- ISSN / ISBN
- 1616-301X, 1616-3028
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Zitierfähiger Nachweis
Dongning Gao, Hongmiao Tian, Hongquan Pan, Yingze Li, Ruojun Yi, Yawen Shao, Yanan Peng, Qiurui Zhang, Duorui Wang, Xiangming Li, Xiaoliang Chen, Chunhui Wang, Qiguang He, Jinyou Shao (2026). Tough and High‐Force‐Output Liquid Crystal Elastomers as Soft Artificial Muscles for Macroscopic Mechanical Work. Advanced Functional Materials. https://doi.org/10.1002/adfm.77804
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