首页 /研究 /An Adaptive Grasping Multi-Degree-of-Freedom Prosthetic Hand with a Rigid–Flexible Coupling Structure
MANIPULATION

An Adaptive Grasping Multi-Degree-of-Freedom Prosthetic Hand with a Rigid–Flexible Coupling Structure

Lishu Wu, Qingcong Wu

发表年份
2025
引用次数
1
访问权限
开放获取

摘要

This study presents the design and evaluation of a dexterous prosthetic hand featuring five fingers, ten independently actuated joints, and four passively driven joints. The hand's dexterity is enabled by a novel rigid-flexible coupled finger mechanism that incorporates a 1-active-1-passive joint configuration, which can enhance the dexterity of traditional rigid actuators while achieving a human-like workspace. Each finger is designed with a specific degree of rotational freedom to mimic natural opening and closing motions. This study also elaborates on the mapping of eight-channel electromyography to finger grasping force through improved TCN, as well as the control algorithm for grasping flexible objects. A functional prototype of the prosthetic hand was fabricated, and a series of experiments involving adaptive grasping and handheld manipulation tasks were conducted to validate the effectiveness of the proposed mechanical structure and control strategy. The results demonstrate that the hand can stably grasp flexible objects of various shapes and sizes. This work provides a practical solution for prosthetic hand design, offering promising potential for developing lightweight, dexterous, and highly anthropomorphic robotic hands suitable for real-world applications.

关键词

GRASPProsthetic handActuatorRobotic handClosing (real estate)Mechanism (biology)Finger jointCoupling (piping)GrippersDegrees of freedom (physics and chemistry)

相关论文

查看 MANIPULATION 分类全部论文