Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart Platform

Electrohydraulic Stewart platform is a multi-input and multi-output mechanical-hydraulic coupling system, which has the advantages of large power-to-weight ratio and high accuracy. It has been widely used in construction machinery, aerospace, and other fields. In the actual working process, especial...

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Main Authors: Lijie Zhang, Xuemei Zong, Yue Tang, Xinchun Chen, Junxue Feng, Xiaoming Yuan
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/5587282
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spelling doaj-99dde37aa6b741ad9be81e951ac30b382021-04-19T00:04:31ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/5587282Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart PlatformLijie Zhang0Xuemei Zong1Yue Tang2Xinchun Chen3Junxue Feng4Xiaoming Yuan5Hebei Provincial Key Laboratory of Heavy Machinery Fluid Power Transmission and ControlHebei Provincial Key Laboratory of Heavy Machinery Fluid Power Transmission and ControlHebei Provincial Key Laboratory of Heavy Machinery Fluid Power Transmission and ControlHebei Provincial Key Laboratory of Heavy Machinery Fluid Power Transmission and ControlBeijing Research Institute of Automation for Machinery Industry Co., Ltd.Hebei Provincial Key Laboratory of Heavy Machinery Fluid Power Transmission and ControlElectrohydraulic Stewart platform is a multi-input and multi-output mechanical-hydraulic coupling system, which has the advantages of large power-to-weight ratio and high accuracy. It has been widely used in construction machinery, aerospace, and other fields. In the actual working process, especially in the high-speed motion, the Stewart platform movement process will produce a large impact and vibration and then affect the stability, accuracy, and service life of the platform. When the frequency of the external excitation coincides with the natural frequency of the electrohydraulic Stewart platform, it may cause the failure of the platform. Therefore, based on the relationship between the volumetric elastic modulus of the gas-bearing oil and the hydraulic stiffness of the leg, a mechanical-hydraulic coupling dynamic model of the electrohydraulic Stewart platform was established, and the natural frequencies and modal shapes of the platform were analyzed under typical conditions. The sensitivity calculation formula of the natural frequency of the system on the upper platform mass and the hydraulic stiffness of the outer leg is given by an analytical method, and the influence law of the upper platform mass and the outer leg stiffness on the natural frequency and the sensitivity of the electrohydraulic Stewart platform under typical conditions is discussed. This study can provide theoretical support for dynamic optimization of the electrohydraulic Stewart platform.http://dx.doi.org/10.1155/2021/5587282
collection DOAJ
language English
format Article
sources DOAJ
author Lijie Zhang
Xuemei Zong
Yue Tang
Xinchun Chen
Junxue Feng
Xiaoming Yuan
spellingShingle Lijie Zhang
Xuemei Zong
Yue Tang
Xinchun Chen
Junxue Feng
Xiaoming Yuan
Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart Platform
Shock and Vibration
author_facet Lijie Zhang
Xuemei Zong
Yue Tang
Xinchun Chen
Junxue Feng
Xiaoming Yuan
author_sort Lijie Zhang
title Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart Platform
title_short Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart Platform
title_full Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart Platform
title_fullStr Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart Platform
title_full_unstemmed Modal and Natural Frequency Sensitivity Analysis of Electrohydraulic Stewart Platform
title_sort modal and natural frequency sensitivity analysis of electrohydraulic stewart platform
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description Electrohydraulic Stewart platform is a multi-input and multi-output mechanical-hydraulic coupling system, which has the advantages of large power-to-weight ratio and high accuracy. It has been widely used in construction machinery, aerospace, and other fields. In the actual working process, especially in the high-speed motion, the Stewart platform movement process will produce a large impact and vibration and then affect the stability, accuracy, and service life of the platform. When the frequency of the external excitation coincides with the natural frequency of the electrohydraulic Stewart platform, it may cause the failure of the platform. Therefore, based on the relationship between the volumetric elastic modulus of the gas-bearing oil and the hydraulic stiffness of the leg, a mechanical-hydraulic coupling dynamic model of the electrohydraulic Stewart platform was established, and the natural frequencies and modal shapes of the platform were analyzed under typical conditions. The sensitivity calculation formula of the natural frequency of the system on the upper platform mass and the hydraulic stiffness of the outer leg is given by an analytical method, and the influence law of the upper platform mass and the outer leg stiffness on the natural frequency and the sensitivity of the electrohydraulic Stewart platform under typical conditions is discussed. This study can provide theoretical support for dynamic optimization of the electrohydraulic Stewart platform.
url http://dx.doi.org/10.1155/2021/5587282
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