| Literature DB >> 35474944 |
Meng Li1, Aniket Pal1, Amirreza Aghakhani1, Abdon Pena-Francesch1,2, Metin Sitti1,3,4.
Abstract
Inspired by physically adaptive, agile, reconfigurable and multifunctional soft-bodied animals and human muscles, soft actuators have been developed for a variety of applications, including soft grippers, artificial muscles, wearables, haptic devices and medical devices. However, the complex performance of biological systems cannot yet be fully replicated in synthetic designs. In this Review, we discuss new materials and structural designs for the engineering of soft actuators with physical intelligence and advanced properties, such as adaptability, multimodal locomotion, self-healing and multi-responsiveness. We examine how performance can be improved and multifunctionality implemented by using programmable soft materials, and highlight important real-world applications of soft actuators. Finally, we discuss the challenges and opportunities for next-generation soft actuators, including physical intelligence, adaptability, manufacturing scalability and reproducibility, extended lifetime and end-of-life strategies.Entities:
Year: 2021 PMID: 35474944 PMCID: PMC7612659 DOI: 10.1038/s41578-021-00389-7
Source DB: PubMed Journal: Nat Rev Mater ISSN: 2058-8437 Impact factor: 66.308