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Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification

This study presents a newly developed piezoelectric drive mechanism for the purpose of designing, analyzing, and testing a micro-positioning platform driven by piezoelectric actuators. The platform incorporates a piezoelectric ceramic actuator and a flexible hinge drive and features a symmetrical tw...

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Detalles Bibliográficos
Autores principales: Zhang, Tao, Xiong, Liuguang, Pan, Zequan, Zhang, Chunhua, Qu, Wen, Wang, Yuhang, Yang, Chunmei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536298/
https://www.ncbi.nlm.nih.gov/pubmed/37763968
http://dx.doi.org/10.3390/mi14091805
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author Zhang, Tao
Xiong, Liuguang
Pan, Zequan
Zhang, Chunhua
Qu, Wen
Wang, Yuhang
Yang, Chunmei
author_facet Zhang, Tao
Xiong, Liuguang
Pan, Zequan
Zhang, Chunhua
Qu, Wen
Wang, Yuhang
Yang, Chunmei
author_sort Zhang, Tao
collection PubMed
description This study presents a newly developed piezoelectric drive mechanism for the purpose of designing, analyzing, and testing a micro-positioning platform driven by piezoelectric actuators. The platform incorporates a piezoelectric ceramic actuator and a flexible hinge drive and features a symmetrical two-stage lever (STSL) amplification mechanism and a parallelogram output structure. The implementation of this design has led to notable enhancements in the dynamic properties of the platform, thereby eliminating the undesired parasitic displacement of the mechanism. An analytical model describing the fully elastic deformation of the platform is established, which is further verified by finite element simulation. Finally, the static and dynamic performances of the platform are comprehensively evaluated through experiments. A closed-loop control strategy is adopted to eliminate the nonlinear hysteresis phenomenon of the piezoceramic actuator (PEA). The experimental results show that the piezoelectric micro-actuator platform has a motion range of 97.84 μm [Formula: see text] 98.03 μm; the output coupling displacement error is less than 1%; the resolutions of the two axes are 8.1 nm and 8 nm, respectively; and the x-axis and y-axis trajectory tracking errors are both 0.6%. The piezoelectric micromotion platform has good dynamic properties, precision, and stability. The design has a wide application potential in the field of micro-positioning.
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spelling pubmed-105362982023-09-29 Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification Zhang, Tao Xiong, Liuguang Pan, Zequan Zhang, Chunhua Qu, Wen Wang, Yuhang Yang, Chunmei Micromachines (Basel) Article This study presents a newly developed piezoelectric drive mechanism for the purpose of designing, analyzing, and testing a micro-positioning platform driven by piezoelectric actuators. The platform incorporates a piezoelectric ceramic actuator and a flexible hinge drive and features a symmetrical two-stage lever (STSL) amplification mechanism and a parallelogram output structure. The implementation of this design has led to notable enhancements in the dynamic properties of the platform, thereby eliminating the undesired parasitic displacement of the mechanism. An analytical model describing the fully elastic deformation of the platform is established, which is further verified by finite element simulation. Finally, the static and dynamic performances of the platform are comprehensively evaluated through experiments. A closed-loop control strategy is adopted to eliminate the nonlinear hysteresis phenomenon of the piezoceramic actuator (PEA). The experimental results show that the piezoelectric micro-actuator platform has a motion range of 97.84 μm [Formula: see text] 98.03 μm; the output coupling displacement error is less than 1%; the resolutions of the two axes are 8.1 nm and 8 nm, respectively; and the x-axis and y-axis trajectory tracking errors are both 0.6%. The piezoelectric micromotion platform has good dynamic properties, precision, and stability. The design has a wide application potential in the field of micro-positioning. MDPI 2023-09-21 /pmc/articles/PMC10536298/ /pubmed/37763968 http://dx.doi.org/10.3390/mi14091805 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Tao
Xiong, Liuguang
Pan, Zequan
Zhang, Chunhua
Qu, Wen
Wang, Yuhang
Yang, Chunmei
Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification
title Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification
title_full Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification
title_fullStr Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification
title_full_unstemmed Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification
title_short Design and Analysis of XY Large Travel Micro Stage Based on Secondary Symmetric Lever Amplification
title_sort design and analysis of xy large travel micro stage based on secondary symmetric lever amplification
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536298/
https://www.ncbi.nlm.nih.gov/pubmed/37763968
http://dx.doi.org/10.3390/mi14091805
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