Piao Chengxu, Suk Ji Won
School of Mechanical Engineering, Sungkyunkwan University, Suwon, Gyeonggi-do, 16419, Republic of Korea.
SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University, Suwon, Gyeonggi-do, 16419, Republic of Korea.
Sci Rep. 2020 Oct 16;10(1):17553. doi: 10.1038/s41598-020-74641-5.
Twisted and coiled actuators (TCAs), fabricated by twisting cheap nylon sewing threads, have attracted a great deal of attention for their use as artificial muscles or soft actuators. Since the dynamic behavior of a thermally-operated TCA is governed by its thermal properties, graphene and silver nanoflowers (AgNFs) were spray-coated onto the surface of an actuator to achieve enhanced heat transfer. Addition of AgNFs improves interfacial thermal contacts between graphene flakes, while pristine graphene flakes have extremely high in-plane thermal conductivity. Thus, the synergistic effect of graphene and AgNFs reduced the total cycle time of the TCA by up to 38%. Furthermore, when a pulsed current with a 40% duty cycle was applied to the TCA, the graphene/AgNF-coated TCA exhibited a threefold larger peak-to-peak amplitude of the displacement oscillation of the actuator, as compared to that of the non-coated TCA, which demonstrates that the combination of graphene and AgNFs effectively reduced a cooling time of the TCA. This work shows great potential for a simple coating of graphene and AgNFs to produce high-performance thermally-operated soft actuators.
通过扭转廉价的尼龙缝纫线制造的扭曲和盘绕致动器(TCA),作为人造肌肉或软致动器受到了广泛关注。由于热驱动TCA的动态行为受其热性能支配,因此将石墨烯和银纳米花(AgNFs)喷涂到致动器表面以实现增强的热传递。添加AgNFs改善了石墨烯薄片之间的界面热接触,而原始石墨烯薄片具有极高的面内热导率。因此,石墨烯和AgNFs的协同效应使TCA的总循环时间缩短了38%。此外,当向TCA施加占空比为40%的脉冲电流时,与未涂层的TCA相比,涂覆有石墨烯/AgNFs的TCA的致动器位移振荡的峰峰值幅度大三倍,这表明石墨烯和AgNFs的组合有效地缩短了TCA的冷却时间。这项工作展示了通过简单涂覆石墨烯和AgNFs来制造高性能热驱动软致动器的巨大潜力。