用于工程应用的超长扭曲和盘绕聚合物人造肌肉的有效在线性能调制和高效连续制备。

Soft robotics Pub Date : 2024-06-01 Epub Date: 2024-01-08 DOI:10.1089/soro.2023.0043
Qingwei Li, Mingxing Cheng, Mengjie Wu
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引用次数: 0

摘要

人造肌肉是一种线状致动器,能在外界刺激下产生收缩应变、产生力并输出机械功,从而模仿生物肌肉的功能和性能。它可用于驱动各种仿生软机器人,具有广阔的应用前景。电控扭曲盘绕聚合物(TCP)人工肌肉具有功率密度高、冲程大、驱动电压低、不含电解质等优点,最为实用。然而,肌肉性能与其制备参数之间的关系尚不十分明确,根据实际需要设计和制备 TCP 肌肉的完整程序尚未建立。此外,目前的制备方法非常耗时,而且无法制备超长的 TCP 肌肉。这些问题极大地限制了 TCP 人工肌肉的广泛应用。在本研究中,我们研究并建立了 TCP 肌肉的驱动性能与其制备参数之间的关系,从而可以根据实际需求轻松设计和制备合适的 TCP 肌肉。此外,我们还开发了一种集成一步退火技术的高效制备方法,以实现在线性能调制和超长 TCP 肌肉的连续制造。通过在热阻膜上图形化组装长肌肉,我们设计并制作出了一系列花式软机器人(蝴蝶、花朵、海星),它们可以做出各种仿生动作并完成特定任务。这项工作实现了超长 TCP 肌肉的高效按需制备和大规模组装,为其在软机器人领域的工程应用奠定了坚实的基础。
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Effective On-Line Performance Modulation and Efficient Continuous Preparation of Ultra-Long Twisted and Coiled Polymer Artificial Muscles for Engineering Applications.

Artificial muscle is a kind of thread-like actuator that can produce contractile strain, generate force, and output mechanical work under external stimulations to imitate the functions and achieve the performances of biological muscles. It can be used to actuate various bionic soft robots and has broad application prospects. The electrically controlled twisted and coiled polymer (TCP) artificial muscles, with the advantages of high power density, large stroke and low driving voltage, while also being electrolyte free, are the most practical. However, the relationship between the muscle performances and its preparation parameters is not very clear yet, and the complete procedure of designing and preparing TCP muscles according to actual needs has not been established. Besides, current preparation approaches are very time-consuming and cannot make ultra-long TCP muscles. These problems greatly limit wide applications of TCP artificial muscles. In this study, we studied and built the relationship between the actuating performances of TCP muscles and their preparation parameters, so that suitable TCP muscles can be easily designed and prepared according to actual requirements. Moreover, an efficient preparation method integrating one-step annealing technique has been developed to realize on-line performance modulation and continuous fabrication of ultra-long TCP muscles. By graphically assembling long muscles on heat-resist films, we designed and produced a series of fancy soft robots (butterfly, flower, starfish), which can perform various bionic movements and complete specific tasks. This work has achieved efficient on-demand preparation and large-scale assembly of ultra-long TCP muscles, laying solid foundations for their engineering applications in soft robot field.

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