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机器人技术与驱动器的生物启发来源及材料的最新进展

Recent Advances in Sources of Bio-Inspiration and Materials for Robotics and Actuators.

作者信息

Yang Yue, Ai Chao, Chen Wenting, Zhen Jinpeng, Kong Xiangdong, Jiang Yunhong

机构信息

Hebei Provincial Key Laboratory of Heavy Machinery Fluid Power Transmission and Control, Yanshan University, Qinhuangdao, 066004, P.R. China.

School of Mechanical Engineering, Yanshan University, Qinhuangdao, 066004, P.R. China.

出版信息

Small Methods. 2023 Sep;7(9):e2300338. doi: 10.1002/smtd.202300338. Epub 2023 Jun 28.

Abstract

Bionic robotics and actuators have made dramatic advancements in structural design, material preparation, and application owing to the richness of nature and innovative material design. Appropriate and ingenious sources of bio-inspiration can stimulate a large number of different bionic systems. After millennia of survival and evolutionary exploration, the mere existence of life confirms that nature is constantly moving in an evolutionary direction of optimization and improvement. To this end, bio-inspired robots and actuators can be constructed for the completion of a variety of artificial design instructions and requirements. In this article, the advances in bio-inspired materials for robotics and actuators with the sources of bio-inspiration are reviewed. The specific sources of inspiration in bionic systems and corresponding bio-inspired applications are summarized first. Then the basic functions of materials in bio-inspired robots and actuators is discussed. Moreover, a principle of matching biomaterials is creatively suggested. Furthermore, the implementation of biological information extraction is discussed, and the preparation methods of bionic materials are reclassified. Finally, the challenges and potential opportunities involved in finding sources of bio-inspiration and materials for robotics and actuators in the future is discussed.

摘要

由于大自然的丰富性和创新性材料设计,仿生机器人和驱动器在结构设计、材料制备及应用方面取得了显著进展。恰当且巧妙的生物启发来源能够激发大量不同的仿生系统。经过数千年的生存和进化探索,生命的存在本身就证实了大自然一直在朝着优化和改进的进化方向发展。为此,可以构建受生物启发的机器人和驱动器,以完成各种人工设计指令和要求。在本文中,我们综述了具有生物启发来源的用于机器人和驱动器的生物启发材料的进展。首先总结了仿生系统中的具体启发来源以及相应的受生物启发的应用。然后讨论了材料在受生物启发的机器人和驱动器中的基本功能。此外,创造性地提出了生物材料匹配原则。进一步讨论了生物信息提取的实现,并对仿生材料的制备方法进行了重新分类。最后,探讨了未来在寻找用于机器人和驱动器的生物启发来源及材料方面所涉及的挑战和潜在机遇。

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