arXiv:2412.02650cs.RO2024-12被引 42

用可变形结构让软机器人实现持续扭矩传递,兼顾柔韧与力量。

Bridging Hard and Soft: Mechanical Metamaterials Enable Rigid Torque Transmission in Soft Robots

  • 用机械超材料结构替代材料属性,实现软体臂的柔性与扭矩传输兼得。
  • 关节扭转载荷比弯曲刚度高52倍,可弯45°,轨迹重复精度达0.4mm和0.1°。
  • 适合人机协作、精密装配等需柔韧安全与精准控制的场景。

扭矩与连续旋转是刚性机器人执行动作与操作的核心方式。软体机器人臂采用柔性材料与结构模仿生物手臂的被动顺应性,但这种顺应性阻碍了其持续传递和施加扭矩的能力。本文展示了一种新方法:通过结构图案化而非依赖材料本征属性,使软体机械臂在保持柔顺的同时仍能持续传递扭矩。我们设计了一种由一对机械超材料构成的软体臂,其作为柔性等速关节,扭转载荷刚度最高可达弯曲刚度的52倍,最大弯曲角度达45°。该臂可在其他方向变形时持续传递扭矩,且运动轨迹重复性高达0.4 mm 和 0.1°。我们还训练神经网络学习逆运动学,使臂能完成安装灯泡、拧紧螺栓、旋转阀门等对现有软体机器人而言极具挑战的任务。其被动柔顺性使其在人类附近操作更安全,并具备适应错位的机械智能,从而提升对物体的自适应操控能力。本研究推动了硬软机器人间的融合,在人机协作、仓储自动化及极端环境应用中具有前景。

原文摘要 · Abstract (English)

Torque and continuous rotation are fundamental methods of actuation and manipulation in rigid robots. Soft robot arms use soft materials and structures to mimic the passive compliance of biological arms that bend and extend. This use of compliance prevents soft arms from continuously transmitting and exerting torques to interact with their environment. Here, we show how relying on patterning structures instead of inherent material properties allows soft robotic arms to remain compliant while continuously transmitting torque to their environment. We demonstrate a soft robotic arm made from a pair of mechanical metamaterials that act as compliant constant-velocity joints. The joints are up to 52 times stiffer in torsion than bending and can bend up to 45°. This robot arm can continuously transmit torque while deforming in all other directions. The arm's mechanical design achieves high motion repeatability (0.4 mm and 0.1°) when tracking trajectories. We then trained a neural network to learn the inverse kinematics, enabling us to program the arm to complete tasks that are challenging for existing soft robots such as installing light bulbs, fastening bolts, and turning valves. The arm's passive compliance makes it safe around humans and provides a source of mechanical intelligence, enabling it to adapt to misalignment when manipulating objects. This work will bridge the gap between hard and soft robotics with applications in human assistance, warehouse automation, and extreme environments.

软体机器人机械超材料扭矩传输人机协作

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