Residential College | false |
Status | 已發表Published |
Novel design of a piezoelectrically actuated compliant microgripper with high area-usage efficiency | |
Lyu, Zekui; Xu, Qingsong | |
2022-07-01 | |
Source Publication | Precision Engineering |
ISSN | 0141-6359 |
Volume | 76Pages:1-11 |
Abstract | Microgrippers act as an end effector in micromanipulation systems, completing the pick-transport-release operations during the working process. This paper presents the design, modeling, optimization, simulation, and experiment of a novel piezoelectrically actuated compliant microgripper for micromanipulation and microassembly. Considering the space and cost constraints of the micromanipulation system, the area-usage efficiency and piezoelectric actuator utilization efficiency are introduced to evaluate its performance. A three-stage amplification mechanism based on bridge-type and leverage mechanisms arranged in series is introduced to achieve a large jaw displacement. The displacement amplification ratio of the microgripper is analyzed via the pseudo-rigid-body model approach. Optimization based on response surface analysis was conducted to determine the structural parameters of the compliant mechanism. Finite-element analysis is performed to evaluate the gripper performance. Moreover, a gripper prototype was fabricated for the experimental test. The investigation results indicate that the gripper allows a maximum gripping displacement of 548.42 μm, a first natural frequency of 334 Hz, and a motion resolution of ±0.75 μm. In comparison with previous designs, the reported microgripper has the advantages of a larger displacement, higher area-usage efficiency, and better PEA utilization efficiency. The micromanipulation capability of the developed gripper was demonstrated by gripping three tiny objects of different sizes and shapes. |
Keyword | Compliant Mechanism Microgripper Micromanipulation Pid Controller Piezoelectric Actuator |
DOI | 10.1016/j.precisioneng.2022.03.003 |
URL | View the original |
Indexed By | SCIE |
Language | 英語English |
WOS Research Area | Engineeringscience & Technology - Other Topics ; Instruments & Instrumentation |
WOS Subject | Engineering, Multidisciplinary ; Engineering, Manufacturing ; Nanoscience & Nanotechnology ; Instruments & Instrumentation |
WOS ID | WOS:000806818900001 |
Publisher | ELSEVIER SCIENCE INC, STE 800, 230 PARK AVE, NEW YORK, NY 10169 |
Scopus ID | 2-s2.0-85125773607 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | DEPARTMENT OF ELECTROMECHANICAL ENGINEERING |
Corresponding Author | Xu, Qingsong |
Affiliation | Department of Electromechanical Engineering, Faculty of Science and Technology, University of Macau, Avenida da Universidade, Taipa, Macau, China |
First Author Affilication | Faculty of Science and Technology |
Corresponding Author Affilication | Faculty of Science and Technology |
Recommended Citation GB/T 7714 | Lyu, Zekui,Xu, Qingsong. Novel design of a piezoelectrically actuated compliant microgripper with high area-usage efficiency[J]. Precision Engineering, 2022, 76, 1-11. |
APA | Lyu, Zekui., & Xu, Qingsong (2022). Novel design of a piezoelectrically actuated compliant microgripper with high area-usage efficiency. Precision Engineering, 76, 1-11. |
MLA | Lyu, Zekui,et al."Novel design of a piezoelectrically actuated compliant microgripper with high area-usage efficiency".Precision Engineering 76(2022):1-11. |
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