Functional Fibers and Fabrics for Soft Robotics, Wearables, and Human–Robot Interface
Функциональные волокна и ткани для мягкой робототехники, носимых устройств и взаимодействия человека и робота
2020-10-06
SCID: 54.1/xnq95y9t
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fiber/yarn-based artificial musclesfunctional fibers and fabricshuman–robot interfacessoft roboticswearable electronics
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Abstract (AI)
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.
Key Findings
1
Dynamic fibers and fabrics extend conventional textiles with active sensing and actuation capabilities for soft robotics and wearable systems.
2
Fiber and fabric actuators respond to diverse external stimuli and can function as artificial muscles for robotic manipulation and human-motion assistance.
3
Geometrically engineered fibers and fabrics enable sensing and energy harvesting from the human body and surrounding environment.
4
Integration with garments, skin, and living organisms enables multifunctional, potentially self-powered platforms for human–robot interaction and biomedical applications.
5
Smart garments incorporating responsive fibers can enhance human perception and support safer, more user-friendly human–robot interactions.
6
The review identifies stimulus–response relationships, current challenges, and potential routes for advancing robotic fibers, fabrics, and wearable technologies.
Research Object
Responsive fibers and fabrics for soft robotics, wearable electronics, and human–robot interfaces
Research Subject
Their stimulus-responsive actuation, sensing, energy harvesting, integration, and multifunctional performance
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2020-10-06
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