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石墨烯-介孔碳-镍-聚乙烯醇涂层芯轴缠绕TCP人工肌肉的制备与表征

Fabrication and Characterization of Graphene-Mesoporous Carbon-Nickel-Poly(Vinyl Alcohol)-Coated Mandrel-Coiled TCP Artificial Muscle.

作者信息

Matharu Pawandeep Singh, Song Yuyang, Gandhi Umesh, Tadesse Yonas

机构信息

Humanoid, Biorobotics and Smart Systems (HBS Lab), Mechanical Engineering Department, The University of Texas at Dallas, Richardson, TX 75080, USA.

Toyota Research Institute of North America, 1555 Woodridge Ave, Ann Arbor, MI 48105, USA.

出版信息

Biomimetics (Basel). 2024 Jul 26;9(8):458. doi: 10.3390/biomimetics9080458.

Abstract

This study investigates the performance enhancement of mandrel-coiled twisted and coiled polymer fibers with a nichrome heater (TCP) by coating with a solution of graphene-mesoporous carbon-nickel-polyvinyl alcohol. The coating process involved a one-pot synthesis utilizing graphene powder, Ni nanoparticles, mesoporous carbon, and PVA as a binding agent. The coating was performed by manually shaking the TCP and the subsequent annealing process, which results in improved thermal conductivity and actuation behavior of the TCP. Experimental results on a 60 mm long actuator demonstrated significant enhancements in actuation displacement and actuation strain (20% to 42%) under various loads with an input current of 0.27 A/power 2.16 W. The blocked stress is ~10 MPa under this 2.16 W power input and the maximum strain is 48% at optimum load of 1.4 MPa. The observed actuation strain correlated directly with the input power. The coated TCP exhibited better thermal contacts, facilitating enhanced heat transfer, and reducing power consumption by 6% to 9% compared to non-coated actuators. It was found that the nanomaterial coating helps the TCP actuator to be reliable for more than 75,000 actuation cycles at 0.1 Hz in air due to improved thermal conductivity. These findings highlight the potential for further research to optimize electrothermally operated TCP actuators and unlock advancements in this field.

摘要

本研究通过用石墨烯-介孔碳-镍-聚乙烯醇溶液进行涂层,来探究带有镍铬合金加热器的芯轴缠绕扭绞与缠绕聚合物纤维(TCP)的性能提升。涂层过程涉及一锅法合成,利用石墨烯粉末、镍纳米颗粒、介孔碳以及作为粘合剂的聚乙烯醇。通过手动摇晃TCP并进行后续退火过程来进行涂层,这使得TCP的热导率和驱动行为得到改善。对一个60毫米长的致动器的实验结果表明,在输入电流为0.27A/功率2.16W的各种负载下,驱动位移和驱动应变有显著提高(从20%提高到42%)。在2.16W的功率输入下,阻塞应力约为10MPa,在1.4MPa的最佳负载下最大应变是48%。观察到的驱动应变与输入功率直接相关。与未涂层的致动器相比,涂层TCP表现出更好的热接触,促进了增强的热传递,并降低了6%至9%的功耗。研究发现,由于热导率提高,纳米材料涂层有助于TCP致动器在空气中以0.1Hz的频率可靠地进行超过75,000次驱动循环。这些发现突出了进一步研究以优化电热操作的TCP致动器并在该领域取得进展的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b15/11351770/69b1339024bd/biomimetics-09-00458-g001.jpg

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