介电弹性体人造肌肉材料的发展与软体机器人应用

SmartMat Pub Date : 2023-03-29 DOI:10.1002/smm2.1203
Yuxuan Guo, Qicong Qin, Ziqing Han, Roshan Plamthottam, Mason Possinger, Qibing Pei
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引用次数: 4

摘要

传统的机器人系统是用刚性材料建造的,以处理大的力和预定的过程。然而,软机器人是一个新兴领域,旨在开发能够在不可预测的环境中执行任务的适应性机器人和缩小人与机器之间差距的生物相容性设备。介电弹性体(DEs)已经成为一种模仿自然肌肉的特性和性能的软驱动技术,使其成为软机器人的有吸引力的材料选择。然而,传统的DE材料受到机电不稳定性(EMI)的影响,这降低了它们的性能并限制了它们在软机器人中的应用。这篇综述从材料的角度讨论了DE人造肌肉的关键创新,然后调查了他们在软机器人技术中的代表性演示。具体来说,我们介绍了DE材料的修改,通过抑制EMI实现大应变、快速响应和高能量密度。此外,我们还研究了在DE执行器中允许可变刚度和自愈能力的材料。最后,我们回顾了介电弹性体致动器(DEA)在软机器人中的应用,包括自动化、操纵、运动和人机交互。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dielectric elastomer artificial muscle materials advancement and soft robotic applications
Conventional robotic systems are built with rigid materials to deal with large forces and predetermined processes. Soft robotics, however, is an emerging field seeking to develop adaptable robots that can perform tasks in unpredictable environments and biocompatible devices that close the gap between humans and machines. Dielectric elastomers (DEs) have emerged as a soft actuation technology that imitates the properties and performance of natural muscles, making them an attractive material choice for soft robotics. However, conventional DE materials suffer from electromechanical instability (EMI), which reduces their performance and limits their applications in soft robotics. This review discusses key innovations in DE artificial muscles from a material standpoint, followed by a survey on their representative demonstrations of soft robotics. Specifically, we introduce modifications of DE materials that enable large strains, fast responses, and high energy densities by suppressing EMI. Additionally, we examine materials that allow variable stiffness and self‐healing abilities in DE actuators. Finally, we review dielectric elastomer actuator (DEA) applications in soft robotics in four categories, including automation, manipulation, locomotion, and human interaction.
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