A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal Analysis

The usage of flexible joints has greatly facilitated the widespread application of the Stewart construction mechanism in many advanced fields. This research focuses on the problem that the flexible joints in the Stewart mechanism cause additional stiffness effects on the whole system. A method for s...

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Published in:Machines
Main Authors: Tianqing Zhang, Xiaoxue Gong, Lei Zhang, Yuzhe Wang, Yahui Liu, Lin Li
Format: Article
Language:English
Published: MDPI AG 2023-04-01
Subjects:
Online Access:https://www.mdpi.com/2075-1702/11/4/457
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author Tianqing Zhang
Xiaoxue Gong
Lei Zhang
Yuzhe Wang
Yahui Liu
Lin Li
author_facet Tianqing Zhang
Xiaoxue Gong
Lei Zhang
Yuzhe Wang
Yahui Liu
Lin Li
author_sort Tianqing Zhang
collection DOAJ
container_title Machines
description The usage of flexible joints has greatly facilitated the widespread application of the Stewart construction mechanism in many advanced fields. This research focuses on the problem that the flexible joints in the Stewart mechanism cause additional stiffness effects on the whole system. A method for solving the additional stiffness of flexible joints combining the finite element method (FEM) is proposed, which avoids the complex theoretical derivation process and allows the advantages of high versatility and accuracy. Three aspects make up the main content. Firstly, based on dynamics theory, the theoretical analysis and demonstration of the method are conducted according to the symmetry characteristics of the Stewart platform. Next, the additional stiffness of a designed Stewart platform with flexible joints was solved following the method proposed, and the obtained results were verified through FEM simulation under the given conditions, which give a maximum natural frequency deviation against the theory of 2.26%. Thirdly, dynamics tests associated with the Stewart platform were conducted, and the deviation between the Stewart Platform’s natural frequencies separately obtained from the tests and the theory does not exceed 5%, which demonstrates the effectiveness and accuracy of the method in engineering applications. This study aims to provide technical support for the development of Stewart mechanisms with flexible joints.
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spelling doaj-art-418dffad49e849aa8107d68d33d5d00a2025-08-20T00:15:37ZengMDPI AGMachines2075-17022023-04-0111445710.3390/machines11040457A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal AnalysisTianqing Zhang0Xiaoxue Gong1Lei Zhang2Yuzhe Wang3Yahui Liu4Lin Li5Changchun Institute of Optics, Fine Mechanics and Physics, Changchun 130000, ChinaChang Guang Satellite Technology Co., Ltd., Changchun 130000, ChinaChangchun Institute of Optics, Fine Mechanics and Physics, Changchun 130000, ChinaChangchun Institute of Optics, Fine Mechanics and Physics, Changchun 130000, ChinaChang Guang Satellite Technology Co., Ltd., Changchun 130000, ChinaSpace Optoelectronic Measurement and Perception Lab., Beijing Institute of Control Engineering, Beijing 100190, ChinaThe usage of flexible joints has greatly facilitated the widespread application of the Stewart construction mechanism in many advanced fields. This research focuses on the problem that the flexible joints in the Stewart mechanism cause additional stiffness effects on the whole system. A method for solving the additional stiffness of flexible joints combining the finite element method (FEM) is proposed, which avoids the complex theoretical derivation process and allows the advantages of high versatility and accuracy. Three aspects make up the main content. Firstly, based on dynamics theory, the theoretical analysis and demonstration of the method are conducted according to the symmetry characteristics of the Stewart platform. Next, the additional stiffness of a designed Stewart platform with flexible joints was solved following the method proposed, and the obtained results were verified through FEM simulation under the given conditions, which give a maximum natural frequency deviation against the theory of 2.26%. Thirdly, dynamics tests associated with the Stewart platform were conducted, and the deviation between the Stewart Platform’s natural frequencies separately obtained from the tests and the theory does not exceed 5%, which demonstrates the effectiveness and accuracy of the method in engineering applications. This study aims to provide technical support for the development of Stewart mechanisms with flexible joints.https://www.mdpi.com/2075-1702/11/4/457Stewart platformflexible jointmodal analysisstiffness calculationFEM analysis
spellingShingle Tianqing Zhang
Xiaoxue Gong
Lei Zhang
Yuzhe Wang
Yahui Liu
Lin Li
A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal Analysis
Stewart platform
flexible joint
modal analysis
stiffness calculation
FEM analysis
title A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal Analysis
title_full A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal Analysis
title_fullStr A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal Analysis
title_full_unstemmed A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal Analysis
title_short A Method for Solving the Additional Stiffness Introduced by Flexible Joints in Stewart Platform Based on FEM Modal Analysis
title_sort method for solving the additional stiffness introduced by flexible joints in stewart platform based on fem modal analysis
topic Stewart platform
flexible joint
modal analysis
stiffness calculation
FEM analysis
url https://www.mdpi.com/2075-1702/11/4/457
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