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Functional Fibers and Fabrics for Soft Robotics, Wearables, and Human-Robot Interface

机译:软机器人,可穿戴设备和人机界面的功能纤维和织物

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摘要

Soft robotics inspired by the movement of living organisms, with excellent adaptability and accuracy for accomplishing tasks, are highly desirable for efficient operations and safe interactions with human. With the emerging wearable electronics, higher tactility and skin affinity are pursued for safe and user-friendly human-robot interactions. Fabrics interlocked by fibers perform traditional static functions such as warming, protection, and fashion. Recently, dynamic fibers and fabrics are favorable to deliver active stimulus responses such as sensing and actuating abilities for soft-robots and wearables. First, the responsive mechanisms of fiber/fabric actuators and their performances under various external stimuli are reviewed. Fiber/yarn-based artificial muscles for soft-robots manipulation and assistance in human motion are discussed, as well as smart clothes for improving human perception. Second, the geometric designs, fabrications, mechanisms, and functions of fibers/fabrics for sensing and energy harvesting from the human body and environments are summarized. Effective integration between the electronic components with garments, human skin, and living organisms is illustrated, presenting multifunctional platforms with self-powered potential for human-robot interactions and biomedicine. Lastly, the relationships between robotic/wearable fibers/fabrics and the external stimuli, together with the challenges and possible routes for revolutionizing the robotic fibers/fabrics and wearables in this new era are proposed.
机译:灵感灵感来自生物体运动的灵感,具有出色的适应性和实现任务的准确性,非常适合高效的操作和与人类的安全相互作用。利用新兴的可穿戴电子产品,追求较高的触觉和皮肤亲和力,以获得安全和用户友好的人体机器人相互作用。纤维互锁的织物进行传统的静态功能,如加热,保护和时尚。最近,动态纤维和织物有利于提供活跃的刺激反应,例如对软机器人和可穿戴物的感测和致动能力。首先,综述了纤维/织物致动器的响应机制及其在各种外部刺激下的性能。讨论了用于软机器人的纤维/纱线人工肌肉,以及人类运动的援助,以及改善人类感知的智能衣服。其次,总结了纤维/织物用于感测和从人体和环境收获的纤维/织物的几何设计,制造,机构和功能。说明了具有服装,人体皮肤和生物体的电子元件之间的有效集成,呈现多功能平台,具有人体机器人相互作用和生物医学的自给自足潜力。最后,提出了机器人/可穿戴纤维/织物和外部刺激之间的关系,以及挑战和可能的途径,用于彻底改变这种新的时代在这种新的时代中的机器人纤维/织物和可穿戴设备。

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