A Novel Design of a Multi-Fingered Bionic Hand With Variable Stiffness for Robotic Grasp

Author:

Zang Xizhe1,Wang Chao1,Zhang Pu2,Liu Gangfeng1,Zhang Xuehe1,Zhao Jie1

Affiliation:

1. Harbin Institute of Technology State Key Laboratory of Robotics and System, , Harbin, Heilongjiang 150080 , China

2. Intelligent Robotics Research Center, Zhejiang Lab , Hangzhou, Zhejiang 311121 , China

Abstract

Abstract The robotic hand plays an extremely significant role in completing various robotic tasks, especially for a robot to complete different grasping tasks. In this paper, we propose a novel multi-fingered bionic hand with variable stiffness for robotic grasp. First, based on the analysis of the human hand, we design the modular finger with variable stiffness mechanism and the flexible thumb with dual-link independent mechanism. Second, the multi-fingered bionic hand composed of three modular fingers and one flexible thumb is presented, which possesses 14 degrees-of-freedom (DoFs). Then, the parameters of the designed hand are analyzed to obtain the stiffness characteristics and working space. Furthermore, the grasping control method based on position control and force control is proposed for robotic grasp. Finally, a series of experiments are designed to verify the effectiveness of the designed hand and the proposed method. The experimental results show that (1) the designed variable stiffness mechanism can be used to adjust the stiffness of hand fingers, (2) the proposed method can effectively control the grasping force under different stiffness conditions, and (3) the designed hand can successfully grasp different types of objects by various grasping strategies.

Funder

National Natural Science Foundation of China

State Key Laboratory of Robotics and System

Publisher

ASME International

Subject

Mechanical Engineering

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