Simulation Research on Dynamic Characteristics of Hydraulic Mount

Abstract At present, research on hydraulic mounts has mainly focused on the prediction of the dynamic stiffness and loss angle. Compared to the traditional finite element analysis method, the programming method can be used to analyze hydraulic mounts for a rapid and accurate understanding of the inf...

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Main Authors: Yanhua Liu, Xin Guan, Pingping Lu, Rui Guo
Format: Article
Language:English
Published: SpringerOpen 2021-05-01
Series:Chinese Journal of Mechanical Engineering
Subjects:
Online Access:https://doi.org/10.1186/s10033-021-00571-6
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author Yanhua Liu
Xin Guan
Pingping Lu
Rui Guo
author_facet Yanhua Liu
Xin Guan
Pingping Lu
Rui Guo
author_sort Yanhua Liu
collection DOAJ
description Abstract At present, research on hydraulic mounts has mainly focused on the prediction of the dynamic stiffness and loss angle. Compared to the traditional finite element analysis method, the programming method can be used to analyze hydraulic mounts for a rapid and accurate understanding of the influence of the different mounting parameters on the dynamic stiffness and loss angle. The aims of this study were to investigate the nonlinear dynamic characteristics of a hydraulic mount, and to identify the parameters that affect the dynamic stiffness and loss angle using MATLAB software programs to obtain the influence curves of the parameters, so as to use suitable parameters as the basis for vibration analysis. A nonlinear mechanical model of a hydraulic mount was established according to the basic principles of fluid dynamics. The dynamic stiffness and loss angle of the dimensionless expression were proposed. A numerical calculation method for the dynamic performance evaluation index of the hydraulic mount was derived. A one-to-one correspondence was established between the structural parameters and peak frequency of the evaluation index. The accuracy and applicability of the mechanical model were verified by the test results. The results demonstrated the accuracy of the nonlinear mechanical model of the hydraulic mount, and the vehicle driving comfort was greatly improved by the optimization of the structural parameters.
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spelling doaj.art-50effa6901dd4136b86d156742f85cc62022-12-21T21:25:40ZengSpringerOpenChinese Journal of Mechanical Engineering1000-93452192-82582021-05-013411910.1186/s10033-021-00571-6Simulation Research on Dynamic Characteristics of Hydraulic MountYanhua Liu0Xin Guan1Pingping Lu2Rui Guo3State Key Laboratory of Automobile Simulation and Control, Jilin UniversityState Key Laboratory of Automobile Simulation and Control, Jilin UniversityState Key Laboratory of Automobile Simulation and Control, Jilin UniversityState Key Laboratory of Automobile Simulation and Control, Jilin UniversityAbstract At present, research on hydraulic mounts has mainly focused on the prediction of the dynamic stiffness and loss angle. Compared to the traditional finite element analysis method, the programming method can be used to analyze hydraulic mounts for a rapid and accurate understanding of the influence of the different mounting parameters on the dynamic stiffness and loss angle. The aims of this study were to investigate the nonlinear dynamic characteristics of a hydraulic mount, and to identify the parameters that affect the dynamic stiffness and loss angle using MATLAB software programs to obtain the influence curves of the parameters, so as to use suitable parameters as the basis for vibration analysis. A nonlinear mechanical model of a hydraulic mount was established according to the basic principles of fluid dynamics. The dynamic stiffness and loss angle of the dimensionless expression were proposed. A numerical calculation method for the dynamic performance evaluation index of the hydraulic mount was derived. A one-to-one correspondence was established between the structural parameters and peak frequency of the evaluation index. The accuracy and applicability of the mechanical model were verified by the test results. The results demonstrated the accuracy of the nonlinear mechanical model of the hydraulic mount, and the vehicle driving comfort was greatly improved by the optimization of the structural parameters.https://doi.org/10.1186/s10033-021-00571-6Hydraulic mountVibration analysisDynamic characteristicsCalculation method
spellingShingle Yanhua Liu
Xin Guan
Pingping Lu
Rui Guo
Simulation Research on Dynamic Characteristics of Hydraulic Mount
Chinese Journal of Mechanical Engineering
Hydraulic mount
Vibration analysis
Dynamic characteristics
Calculation method
title Simulation Research on Dynamic Characteristics of Hydraulic Mount
title_full Simulation Research on Dynamic Characteristics of Hydraulic Mount
title_fullStr Simulation Research on Dynamic Characteristics of Hydraulic Mount
title_full_unstemmed Simulation Research on Dynamic Characteristics of Hydraulic Mount
title_short Simulation Research on Dynamic Characteristics of Hydraulic Mount
title_sort simulation research on dynamic characteristics of hydraulic mount
topic Hydraulic mount
Vibration analysis
Dynamic characteristics
Calculation method
url https://doi.org/10.1186/s10033-021-00571-6
work_keys_str_mv AT yanhualiu simulationresearchondynamiccharacteristicsofhydraulicmount
AT xinguan simulationresearchondynamiccharacteristicsofhydraulicmount
AT pingpinglu simulationresearchondynamiccharacteristicsofhydraulicmount
AT ruiguo simulationresearchondynamiccharacteristicsofhydraulicmount