Practical Structural Design Approach of Multiconfiguration Planar Single-Loop Metamorphic Mechanism with a Single Actuator
Yang Q(杨强)3; Hao, Guangbo2; Li SJ(李树军)1,3; Wang HG(王洪光)1; Li, Haiyang3
刊名Chinese Journal of Mechanical Engineering (English Edition)
2020
卷号33期号:1页码:1-15
关键词Metamorphic mechanism Structural design Form of metamorphic joints Multiconfiguration Equivalent resistance Single actuator
ISSN号1000-9345
产权排序3
英文摘要

As a type of multiconfiguration mechanism that can operate in an under-actuated state, metamorphic mechanisms were proposed more than two decades ago and attracted significant interest. Studies on structural synthesis of metamorphic mechanisms tend to focus more on metamorphic techniques and the structural synthesis of source mechanisms for metamorphic mechanisms. By designing different constraint architectures of metamorphic joints, multistructures can be obtained from the same source metamorphic mechanism. To determine the constraint architectures of metamorphic joints and their different assembly combinations, a kinematic status matrix and a corresponding constraint status matrix are constructed based on the metamorphic cyclogram of a source mechanism. According to the equivalent resistance gradient model and the constraint status matrix, an equivalent resistance matrix for the metamorphic joints is proposed. A structural synthesis matrix of the metamorphic mechanism is then obtained from the equivalent resistance matrix by deducing the constraint form vectors of the metamorphic joints. Furthermore, a kinematic diagram synthesis of the source metamorphic mechanism of a planar single-loop metamorphic mechanism is proposed, which is based on only the 14 one- or zero-degrees-of-freedom linkage groups. The entire structural design method of a metamorphic mechanism is based on the structural synthesis matrix and is presented as a systematic process. Finally, the proposed structural design approach is illustrated by two examples to verify its feasibility and practicality. This study provides an effective method for designing a practical multi-mobility and multiconfiguration planar single-loop metamorphic mechanism with a single actuator.

资助项目National Natural Science Foundation of China[51575091] ; National Natural Science Foundation of China[51205052] ; Aeronautical Science Foundation of China[20170250001] ; Basic Science and Research Project of Chinese National University[N160304008]
WOS关键词ADJACENCY MATRIX ; CONFIGURATION ; MOTION
WOS研究方向Engineering
语种英语
CSCD记录号CSCD:6863376
WOS记录号WOS:000588309300003
资助机构National Natural Science Foundation of China (Grant No. 51575091, 51205052), Aeronautical Science Foundation of China (Grant No. 20170250001), and the Basic Science and Research Project of Chinese National University (Grant No. N160304008)
内容类型期刊论文
源URL[http://ir.sia.cn/handle/173321/27903]  
专题工艺装备与智能机器人研究室
通讯作者Yang Q(杨强)
作者单位1.State Key Laboratory of Robotics, Shenyang Institute of Automation, Chinese Academy of Sciences, Shenyang 110016, China
2.Department of Electrical and Electronic Engineering, University College Cork, Cork T12 K8AF, Ireland
3.College of Mechanical Engineering and Automation, Northeastern University, Shenyang 110819, China
推荐引用方式
GB/T 7714
Yang Q,Hao, Guangbo,Li SJ,et al. Practical Structural Design Approach of Multiconfiguration Planar Single-Loop Metamorphic Mechanism with a Single Actuator[J]. Chinese Journal of Mechanical Engineering (English Edition),2020,33(1):1-15.
APA Yang Q,Hao, Guangbo,Li SJ,Wang HG,&Li, Haiyang.(2020).Practical Structural Design Approach of Multiconfiguration Planar Single-Loop Metamorphic Mechanism with a Single Actuator.Chinese Journal of Mechanical Engineering (English Edition),33(1),1-15.
MLA Yang Q,et al."Practical Structural Design Approach of Multiconfiguration Planar Single-Loop Metamorphic Mechanism with a Single Actuator".Chinese Journal of Mechanical Engineering (English Edition) 33.1(2020):1-15.
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