arXiv:2510.13535cs.RO2025-10中稿 · IEEE/RSJ Internati…被引 1

单电机驱动的仿生机械手,可自适应抓取不同形状物体

A Novel Robot Hand with Hoeckens Linkages and Soft Phalanges for Scooping and Self-Adaptive Grasping in Environmental Constraints

  • 采用霍肯斯连杆与软指节设计,仅靠一个电机实现三种抓握模式
  • 实验验证在复杂环境下能稳定抓取,力矩分析确保性能可靠
  • 适合需要柔性适应性的工业抓取或野外作业场景

本文提出一种新型欠驱动自适应机器人手Hockens-A Hand,结合霍肯斯机构(双平行四边形连杆)和特殊四杆放大系统,实现平行捏合、非对称舀取和包裹式抓握三种自适应抓握模式。该手仅需一个线性执行器,利用被动机械智能在非结构化环境中实现自适应与柔顺性。其中,霍肯斯机构垂直运动提供柔顺性,双平行四边形连杆保证指尖线接触,四杆放大系统实现抓握模式自然过渡。此外,网纹硅胶指节进一步增强对不同形状与尺寸物体的包裹能力。通过详细运动学分析优化推角并设计连杆长度,仿真验证了指尖运动轨迹及模式切换的平滑性。基于功率方程分析抓握力以提升性能理解。3D打印原型实测表明,该手在多种环境约束下可稳定实现三种抓握模式,验证了其抓取稳定性与广泛适用性。

原文摘要 · Abstract (English)

This paper presents a novel underactuated adaptive robotic hand, Hockens-A Hand, which integrates the Hoeckens mechanism, a double-parallelogram linkage, and a specialized four-bar linkage to achieve three adaptive grasping modes: parallel pinching, asymmetric scooping, and enveloping grasping. Hockens-A Hand requires only a single linear actuator, leveraging passive mechanical intelligence to ensure adaptability and compliance in unstructured environments. Specifically, the vertical motion of the Hoeckens mechanism introduces compliance, the double-parallelogram linkage ensures line contact at the fingertip, and the four-bar amplification system enables natural transitions between different grasping modes. Additionally, the inclusion of a mesh-textured silicone phalanx further enhances the ability to envelop objects of various shapes and sizes. This study employs detailed kinematic analysis to optimize the push angle and design the linkage lengths for optimal performance. Simulations validated the design by analyzing the fingertip motion and ensuring smooth transitions between grasping modes. Furthermore, the grasping force was analyzed using power equations to enhance the understanding of the system's performance.Experimental validation using a 3D-printed prototype demonstrates the three grasping modes of the hand in various scenarios under environmental constraints, verifying its grasping stability and broad applicability.

机器人手自适应抓取连杆机构柔性设计

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