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Design and characterization of a novel fabric-based robotic arm for future wearable robot application

机译:用于未来可佩带机器人应用的新型面料的机器人手臂的设计与鉴定

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Wearable robots are playing a more and more important role in our daily lives with their direct physical support to human body. However, there are limitation and risks of using conventional robotic technology in wearable robot. Alternatively, soft robot technology has been applied to make wearable devices for various purposes. In this paper, we propose a novel soft inflatable robotic arm made entirely from TPU-coated fabric. A new bending mechanism, arm design and fabrication method are elaborated in detail. The preliminary characterization experiments were implemented and the results show that the arm can achieve 150° bidirectional bending, and the gripper can lift object as heavy as 1.6kg. The current prototype with its decent motion performance, force output, and remarkable portability can be integrated into wearable robotics in the future to provide supports to human in many tasks.
机译:可穿戴机器人在我们的日常生活中发挥越来越重要的作用,他们的直接物理支持人体。然而,在可穿戴机器人中使用传统机器人技术存在的限制和风险。或者,软机器人技术已经应用于为各种目的制造可穿戴设备。在本文中,我们提出了一种从TPU涂层织物完全制造的新型软充气机器臂。详细阐述了一种新的弯曲机构,臂设计和制造方法。实施了初步表征实验,结果表明,臂可以实现150°双向弯曲,夹具可以将物体提升为1.6kg。目前的原型具有其体面的运动性能,力输出和显着的便携性,可以在未来集成到可穿戴机器人中,以便在许多任务中为人提供支持。

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