Soft robots are promising for manipulation tasks thanks to their compliance, safety, and high degree of freedom. However, the commonly used bidirectional continuum segment design means soft robotic manipulators only function in a limited hemispherical workspace. This work increases a soft robotic arm's workspace by designing, fabricating, and controlling an additional soft prismatic actuator at the base of the soft arm. This actuator consists of pneumatic artificial muscles and a piston, making the actuator back-driveable. We increase the task space volume by 116\%, and we are now able to perform manipulation tasks that were previously impossible for soft robots, such as picking and placing objects at different positions on a surface and grabbing an object out of a container. By combining a soft robotic arm with a prismatic joint, we greatly increase the usability of soft robots for object manipulation. This work promotes the use of integrated and modular soft robotic systems for practical manipulation applications in human-centered environments.
翻译:软体机器人由于其合规性、 安全和高度自由性, 有望完成操作任务。 但是, 常用的双向连续部分设计意味着软机器人操纵器只能在有限的半球工作空间运行。 这项工作通过在软臂底部设计、 编织和控制一个额外的软性软性振动器来增加软性机械臂的工作空间。 这个动画机由气动人工肌肉和活塞组成, 使动作器可以回开。 我们增加了任务空间量 116 ⁇, 我们现在能够执行以前对软体机器人来说不可能完成的操作任务, 例如将物体选取和放置在不同位置, 并将物体从容器中抓出。 通过将软体机械臂与振动联合结合起来, 我们大大提高了软体机器人在物体操作上的可用性。 这项工作促进了在人类中心环境中使用集成和模块化软性机器人系统进行实际操作。