Guan Yanfang, Yang Lin, Yang Wei, Zhang Qingyuan, Enock Kasolo, Liu Yansheng, Zhang Lin, Chen Haiyong, Jian Yuhang, Li Zichen, Xi Zhengyang, Kang Yuliang, Zhang ShuaiLong
School of Electromechanical Engineering, Henan University of Technology, Zhengzhou 450052, China.
Henan Key Laboratory of Superhard Abrasives and Grinding Equipment, Henan University of Technology, Zhengzhou 450052, China.
ACS Omega. 2024 Nov 27;9(49):48137-48148. doi: 10.1021/acsomega.4c04271. eCollection 2024 Dec 10.
Soft robots have developed gradually in the fields of portability, high precision, and low noise level due to their unique advantages of low noise and low energy consumption. This paper proposes an electromagnetically driven elastomer, using gelatin and glycerol (GG) as matrix materials and a mixture of multiwalled carbon nanotubes (MWCNTs) and Ag NWs (MA) as the conductive medium. Inchworm-inspired and spider-inspired soft robots have been developed, demonstrating fast movement speed, flexibility, and loading performance. The GG/MA elastomer with a 1:1.2 ratio shows a low elastic modulus and easy demolding. With a 1:1 mixing ratio of MWCNT and Ag NWs, the elastomer exhibits excellent conductivity, torsional stability, and fatigue resistance. The inchworm-inspired soft robot achieves an average speed of 3 mm/s, while supporting weights of grains and capsule at 2.5 and 2.3 mm/s, respectively. The spider-inspired soft robot demonstrates a maximum carrying capacity of 22 g, showcasing its load-bearing capabilities. Overall, the GG/MA elastomer-based soft robot exhibits exceptional flexibility, adaptability, and reliability, with potential in various fields such as goods transportation, safety monitoring, and disaster relief.
由于具有低噪音和低能耗的独特优势,软机器人在便携性、高精度和低噪音水平等领域逐渐得到发展。本文提出了一种电磁驱动弹性体,以明胶和甘油(GG)作为基体材料,以多壁碳纳米管(MWCNTs)和银纳米线(Ag NWs)的混合物(MA)作为导电介质。已经开发出了受尺蠖启发和受蜘蛛启发的软机器人,展示了快速的移动速度、灵活性和负载性能。比例为1:1.2的GG/MA弹性体具有低弹性模量且易于脱模。当MWCNT和Ag NWs的混合比例为1:1时,该弹性体表现出优异的导电性、扭转稳定性和抗疲劳性。受尺蠖启发的软机器人平均速度达到3毫米/秒,同时分别以2.5毫米/秒和2.3毫米/秒的速度支撑谷物和胶囊的重量。受蜘蛛启发的软机器人展示了22克的最大承载能力,彰显了其承重能力。总体而言,基于GG/MA弹性体的软机器人表现出卓越的灵活性、适应性和可靠性,在货物运输、安全监测和救灾等各个领域具有潜力。