Type Synthesis and Kinematics Performance Analysis of a Class of 3T2R Parallel Mechanisms with Large Output Rotational Angles
Bing-Shan Jiang; Hai-Rong Fang; Hai-Qiang Zhang
刊名International Journal of Automation and Computing
2019
卷号16期号:6页码:775-785
关键词Type synthesis Lie group theory configuration evolution kinematics performance evaluation.
ISSN号1476-8186
DOI10.1007/s11633-019-1192-9
英文摘要Based on Lie group theory and the integration of configuration, a class of 3T2R (T denotes translation and R denotes rotation) parallel mechanisms with large output rotational angles is synthesized through a five degree of freedom single limb evolving into two five degree of freedom limbs and constraint coupling of each kinematics chain. A kind of 3T2R parallel mechanisms with large rotational angles was selected from type synthesis of 3T2R parallel mechanisms, inverse kinematics and velocity Jacobian matrix of the parallel mechanism are established. The performance indices including workspace, rotational capacity, singularity and dexterity of the parallel mechanism are analyzed. The results show that the parallel mechanism has not only large output rotational angles but also better dexterity.
内容类型期刊论文
源URL[http://ir.ia.ac.cn/handle/173211/42374]  
专题自动化研究所_学术期刊_International Journal of Automation and Computing
作者单位School of Mechanical, Electronic and Control Engineering, Beijing Jiaotong University, Beijing 100044, China
推荐引用方式
GB/T 7714
Bing-Shan Jiang,Hai-Rong Fang,Hai-Qiang Zhang. Type Synthesis and Kinematics Performance Analysis of a Class of 3T2R Parallel Mechanisms with Large Output Rotational Angles[J]. International Journal of Automation and Computing,2019,16(6):775-785.
APA Bing-Shan Jiang,Hai-Rong Fang,&Hai-Qiang Zhang.(2019).Type Synthesis and Kinematics Performance Analysis of a Class of 3T2R Parallel Mechanisms with Large Output Rotational Angles.International Journal of Automation and Computing,16(6),775-785.
MLA Bing-Shan Jiang,et al."Type Synthesis and Kinematics Performance Analysis of a Class of 3T2R Parallel Mechanisms with Large Output Rotational Angles".International Journal of Automation and Computing 16.6(2019):775-785.
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