Dynamic Modeling and Analysis of Flexible-Joint Robots with Clearance

Author:

Wang Jing1,Zhou Shisheng12ORCID,Wu Jimei12,Qing Jiajuan1,Kang Tuo1,Shao Mingyue2

Affiliation:

1. School of Mechanical and Precision Instrument Engineering, Xi’an University of Technology, Xi’an 710048, China

2. Faculty of Printing, Packing and Digital Media Engineering, Xi’an University of Technology, Xi’an 710048, China

Abstract

The coupling effects of flexible joints and clearance on the dynamics of a robotic system were investigated. A numerical analysis was undertaken to reveal the coupling effects between flexible joints and clearance. The nonlinear spring-damping model and Coulomb model were applied to characterize the contact characteristics of the clearance, and a model for the flexible joint was formulated using the equivalent spring theory. An accurate robot model was established based on the clearance and joint flexibility characterization. The dynamic equation of a robot was obtained according to the Newton-Euler method. A comparative analysis was performed to assess the impacts of both the joint action of clearance and flexible joints and varying joint clearance values on the performance of the robot. The results showed that the coupling effects of flexible joints and clearance had a negative impact on the system dynamic performance. The amplitudes of the dynamic responses caused by the clearance are weakened by the flexible joint, but it leads to the lag of the system response. This study served as the theoretical foundation for exploring precise control techniques in robotics research.

Funder

The National Natural Science Foundation of China

Publisher

MDPI AG

Reference42 articles.

1. The study of coupling dynamics modeling and characteristic analysis for flexible robots with nonlinear and frictional joints;Zhang;Arab. J. Sci. Eng.,2022

2. P-Rob six-degree-of-freedom robot manipulator dynamics modeling and anti-disturbance control;Zhang;IEEE Access,2021

3. Cui, W. Research on the Dynamics and Control Algorithm of the Multi-Link Flexible-Joint Robot. Nanjing University of Aeronautics and Astronautics, Nanjing, China, 2016.

4. Investigation of joint clearance effects on welding robot manipulators;Erkaya;Robot. Comput.-Integr. Manuf.,2012

5. Forward-inverse dynamics analysis of robot arm trajectories and development of a nonlinear friction model for robot joints;Duan;J. Mech. Eng.,2020

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