Kinematics analysis and simulation of 2-CRS-S' parallel mechanism

Author:

Tan Xianhui,Li Wei,Fu Quan,Zhou Xianchen,Yuan Kunyang,Mou Lei,Lai Depeng

Abstract

A 2-CRS-S ' parallel mechanism is proposed in this paper. The parallel mechanism consists of a static platform, two identical driving branches, a moving platform and a fixed branch, with two rotational degrees of freedom on the X and Y axes. Taking the driving branch chain in the mechanism as the research object, the inverse kinematics analysis of the parallel mechanism is carried out by using the D-H analysis method, and on this basis, the forward kinematics analysis of the structure is carried out by combining the particle swarm optimization algorithm. Finally, the Adams software is used to simulate and analyze the mechanism, and the motion angle curve of the moving platform of the mechanism is obtained, which verifies the correctness of the theoretical analysis. The obtained motion angle curves show regular periodic changes, and the curves have no breakpoints and mutations, indicating that the mechanism runs smoothly during the movement and has good kinematic performance.

Publisher

Darcy & Roy Press Co. Ltd.

Reference12 articles.

1. TIAN Hai-bo, MA Hong-wei, XIA Jing, et al. Stiffness Analysis of a Metamorphic Parallel Mechanism with Three Configurations[J]. Mechanism and Machine Theory, 2019, 142(18): 252 —256.

2. Zhu Dongsheng, Guo Zhongfeng, Zhao Wenzeng et al.4-SPS / UPU parallel mechanism kinematics analysis [J]. Yi-zhong Technology, 2022 (02) : 17-20 + 25.

3. CHEN Wenbo, CHEN Weijie et al. Dynamic modeling and simulation of 2UPR / UPS / UP parallel mechanism [J]. Journal of Shanghai University of Technology, 2022, 36 (03 ) : 309-314.

4. Shang Mingming, Wang Heng, Shi Baoyu et al. RSR dynamic modeling and simulation of parallel mechanism [J].Journal of Tangshan Normal University, 2022,44 ( 06 ) : 32-36.

5. Guo Dingxu et al. Dynamic Modeling and Model-Based Control with Neural Network-Based Compensation of a Five Degrees-of-Freedom Parallel Mechanism[J]. Machines, 2023, 11(2) : 195-195.

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