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一种由多物理场驱动的用于智能交通的仿生维纳斯捕蝇草软微型机器人。

A Bionic Venus Flytrap Soft Microrobot Driven by Multiphysics for Intelligent Transportation.

作者信息

Wang Xiaowen, Gao Yingnan, Ma Xiaoyang, Li Weiqiang, Yang Wenguang

机构信息

School of Electromechanical and Automotive Engineering, Yantai University, Yantai 264005, China.

School of Accounting, Shandong Youth University of Political Science, Jinan 250000, China.

出版信息

Biomimetics (Basel). 2023 Sep 17;8(5):429. doi: 10.3390/biomimetics8050429.

Abstract

With the continuous integration of material science and bionic technology, as well as increasing requirements for the operation of robots in complex environments, researchers continue to develop bionic intelligent microrobots, the development of which will cause a great revolution in daily life and productivity. In this study, we propose a bionic flower based on the PNIPAM-PEGDA bilayer structure. PNIPAM is temperature-responsive and solvent-responsive, thus acting as an active layer, while PEGDA does not change significantly in response to a change in temperature and solvent, thus acting as a rigid layer. The bilayer flower is closed in cold water and gradually opens under laser illumination. In addition, the flower gradually opens after injecting ethanol into the water. When the volume of ethanol exceeds the volume of water, the flower opens completely. In addition, we propose a bionic Venus flytrap soft microrobot with a bilayer structure. The robot is temperature-responsive and can reversibly transform from a 2D sheet to a 3D tubular structure. It is normally in a closed state in both cold (T < 32 °C) and hot water (T > 32 °C), and can be used to load and transport objects to the target position (magnetic field strength < 1 T).

摘要

随着材料科学与仿生技术的不断融合,以及对机器人在复杂环境中运行要求的日益提高,研究人员不断研发仿生智能微型机器人,其发展将给日常生活和生产力带来巨大变革。在本研究中,我们提出了一种基于聚N-异丙基丙烯酰胺-聚乙二醇二丙烯酸酯(PNIPAM-PEGDA)双层结构的仿生花。聚N-异丙基丙烯酰胺对温度和溶剂有响应,因此作为活性层,而聚乙二醇二丙烯酸酯在温度和溶剂变化时变化不显著,因此作为刚性层。双层花在冷水中闭合,在激光照射下逐渐开放。此外,向水中注入乙醇后花会逐渐开放。当乙醇体积超过水的体积时,花完全开放。此外,我们还提出了一种具有双层结构的仿生维纳斯捕蝇草软微型机器人。该机器人对温度有响应,能从二维片状可逆转变为三维管状结构。它在冷水(T < 32 °C)和热水(T > 32 °C)中通常处于闭合状态,可用于将物体装载并运输到目标位置(磁场强度 < 1 T)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7286/10526311/bfc7ddaaba4c/biomimetics-08-00429-g001.jpg

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