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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A programmable powerful and ultra-fast water-driven soft actuator inspired by the mutable collagenous tissue of the sea cucumber
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A programmable powerful and ultra-fast water-driven soft actuator inspired by the mutable collagenous tissue of the sea cucumber

机译:可编程强大的和超快速的水驱动软件,灵感来自海参的可变胶原组织

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摘要

The sea cucumber evolved to bear mutable collagenous tissue (MCT) that enables its elastic modulus to change by a factor of 10 within a few seconds. It does this by controlling the amount of chemical regulator released, which can subsequently form or break hydrogen bonds within the MCT. Although existing water-driven, self-operating, soft actuators have great potential for soft robotics, they remain fragile and slow; ergo, their range of application remains modest. Inspired by MCT, we introduce a programmable, powerful, and ultra-fast water-driven self-operating soft actuator exerting an actuation force of approximately 2 N with an actuation speed of approximately 3 s(-1) in 80 degrees C water based on the dramatic stiffness alteration of bulk poly(N-isopropylacrylamide) hydrogel. This actuator also exhibits outstanding robustness by preserving its original shape over multiple cycles of highly strained (300%) actuations under harsh environments. A simple modulation of cross-linker concentration with its dimensional adjustment enabled the precise tuning of not only the actuation force but also the actuation speed in a wide range. Thus, the soft robotic gripper was able to perform a myriad of intricate tasks such as capturing a fragile object, acting as a biomedical appliance, and closing a large wound with uniform appropriate forces.
机译:海参进化成具有可变胶原组织(MCT),使其弹性模量在几秒钟内改变10倍。它通过控制释放的化学调节剂的量来实现这一点,化学调节剂随后会在MCT内形成或破坏氢键。尽管现有的水驱动、自动操作的软执行器在软机器人技术方面具有巨大潜力,但它们仍然脆弱且缓慢;因此,它们的应用范围仍然有限。受MCT的启发,我们推出了一款可编程、功能强大、速度极快的水驱动自操作软致动器,在80摄氏度的水中,基于大块聚(N-异丙基丙烯酰胺)水凝胶的显著刚度变化,可施加约2N的驱动力,驱动速度约为3s(-1)。该致动器在恶劣环境下多次高应变(300%)驱动下保持其原始形状,具有出色的鲁棒性。交联剂浓度的简单调节及其尺寸调整不仅可以精确调节驱动力,还可以在大范围内精确调节驱动速度。因此,软机器人手爪能够执行无数复杂的任务,比如捕捉脆弱的物体,充当生物医学器械,并用均匀适当的力闭合大伤口。

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