Ji Yingxin, Wang Keyi, Zhao Gang
College of Mechanical and Electrical Engineering, Harbin Engineering University, Harbin 150001, China.
Polymers (Basel). 2023 Oct 25;15(21):4214. doi: 10.3390/polym15214214.
In this study, a biomimetic artificial muscle electroactive actuator was fabricated using environmentally friendly sodium alginate extract. Ultrasonic agitation was employed to embed ultrafine copper powder within a mesh-like structure formed by multi-walled carbon nanotubes (MWCNTs), aimed at reducing the internal resistance of the composite electrode membrane and enhancing its output force performance. Focused gallium ion beam-scanning electron microscopy observations, energy-dispersive X-ray spectroscopy (EDS) analysis, and surface morphology imaging confirmed the successful incorporation of the ultrafine copper powder into the MWCNT network. Additionally, we designed and constructed an output force measurement apparatus to assess the output performance of biomimetic artificial muscles (BMAMs) doped with varying quantities of ultrafine copper powder. Electrochemical testing results demonstrated that the artificial muscles exhibited optimal performance when doped with a mass of 1.5 g, yielding a maximum output force of 6.96 mN, an output force density of 30.64 mN/g, and a peak average rate of 0.059 mN/s. These values represented improvements of 224%, 189%, and 222% compared to the electrode membrane without the addition of ultrafine copper powder, respectively.
在本研究中,使用环境友好的海藻酸钠提取物制备了一种仿生人工肌肉电活性致动器。采用超声搅拌将超细铜粉嵌入由多壁碳纳米管(MWCNT)形成的网状结构中,旨在降低复合电极膜的内阻并增强其输出力性能。聚焦镓离子束扫描电子显微镜观察、能量色散X射线光谱(EDS)分析和表面形态成像证实了超细铜粉成功掺入MWCNT网络。此外,我们设计并构建了一种输出力测量装置,以评估掺杂不同数量超细铜粉的仿生人工肌肉(BMAM)的输出性能。电化学测试结果表明,当掺杂1.5 g质量的铜粉时,人工肌肉表现出最佳性能,产生的最大输出力为6.96 mN,输出力密度为30.64 mN/g,峰值平均速率为0.059 mN/s。与未添加超细铜粉的电极膜相比,这些值分别提高了224%、189%和222%。