Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristics

Previous studies have attempted to identify weak links in the dynamic characteristics of the planetary gear reducer (PGR) exterior body structure (EBS). Through numerical simulation, these studies analyzed the modals and natural frequencies and the vibration types of each order of the EBS. However,...

Full description

Bibliographic Details
Main Authors: ShuE Ji, Yongmei Wang, Xigui Wang, Jiafu Ruan, Siyuan An, Baixue Fu
Format: Article
Language:English
Published: JVE International 2021-04-01
Series:Journal of Vibroengineering
Subjects:
Online Access:https://www.jvejournals.com/article/21829
id doaj-77ffbdc137904995a04c176398e67470
record_format Article
spelling doaj-77ffbdc137904995a04c176398e674702021-07-01T20:00:27ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602021-04-0123497699310.21595/jve.2021.2182921829Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristicsShuE Ji0Yongmei Wang1Xigui Wang2Jiafu Ruan3Siyuan An4Baixue Fu5School of Engineering Technology, Northeast Forestry University, No. 26, Hexing Road, Xiangfang District, Harbin, 150040, People’s Republic of ChinaSchool of Motorcar Engineering, Heilongjiang Institute of Technology, No. 999, Hongqidajie Road, Daowai District, Harbin, 150036, People’s Republic of ChinaSchool of Engineering Technology, Northeast Forestry University, No. 26, Hexing Road, Xiangfang District, Harbin, 150040, People’s Republic of ChinaSchool of Engineering Technology, Northeast Forestry University, No. 26, Hexing Road, Xiangfang District, Harbin, 150040, People’s Republic of ChinaSchool of Engineering Technology, Northeast Forestry University, No. 26, Hexing Road, Xiangfang District, Harbin, 150040, People’s Republic of ChinaSchool of Motorcar Engineering, Heilongjiang Institute of Technology, No. 999, Hongqidajie Road, Daowai District, Harbin, 150036, People’s Republic of ChinaPrevious studies have attempted to identify weak links in the dynamic characteristics of the planetary gear reducer (PGR) exterior body structure (EBS). Through numerical simulation, these studies analyzed the modals and natural frequencies and the vibration types of each order of the EBS. However, these scholars have never focused on the main factors affecting the dynamic characteristics of the EBS of this subject. This study in the topic has analyzed the vibroacoustic characteristics of an EBS and optimized its design using numerical simulation. Herein, the contribution of the vibration transfer path from the excitation points on the exterior body to the machine foot is emphatically revealed, and the influences of the main structural parameters on the transfer characteristics are discussed. An optimal EBS for a PGR with lower acoustic vibrations is designed in detail, and a composite EBS with damping vibration attenuation and acoustic absorption is proposed. The radiation acoustic characteristics without acoustic protection and damping materials are analyzed. These research results are implemented in order to realize the dynamic characteristics, transmission, and radiation acoustic characteristics as objects of optimization, and the structural design parameters of the PGR exterior body are deeply optimized using dynamic modification and sensitivity analysis. This topic focuses on the vibroacoustic coupling of EBS in stationary fluid and average flow field, based on the analysis method of theoretical modeling and numerical calculation, the EBS dynamic response and vibroacoustic characteristics under the action of frontal excitation external acoustic flow field are studied, which will be beneficial to explore the comprehensive optimization design of GPR dynamic and vibroacoustic properties.https://www.jvejournals.com/article/21829planetary gear reducergearbox exterior body structurevibroacoustic characteristicsnatural frequencyvibration typeoptimum design
collection DOAJ
language English
format Article
sources DOAJ
author ShuE Ji
Yongmei Wang
Xigui Wang
Jiafu Ruan
Siyuan An
Baixue Fu
spellingShingle ShuE Ji
Yongmei Wang
Xigui Wang
Jiafu Ruan
Siyuan An
Baixue Fu
Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristics
Journal of Vibroengineering
planetary gear reducer
gearbox exterior body structure
vibroacoustic characteristics
natural frequency
vibration type
optimum design
author_facet ShuE Ji
Yongmei Wang
Xigui Wang
Jiafu Ruan
Siyuan An
Baixue Fu
author_sort ShuE Ji
title Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristics
title_short Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristics
title_full Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristics
title_fullStr Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristics
title_full_unstemmed Numerical simulation analysis of a PGR exterior body structure considering vibroacoustic characteristics
title_sort numerical simulation analysis of a pgr exterior body structure considering vibroacoustic characteristics
publisher JVE International
series Journal of Vibroengineering
issn 1392-8716
2538-8460
publishDate 2021-04-01
description Previous studies have attempted to identify weak links in the dynamic characteristics of the planetary gear reducer (PGR) exterior body structure (EBS). Through numerical simulation, these studies analyzed the modals and natural frequencies and the vibration types of each order of the EBS. However, these scholars have never focused on the main factors affecting the dynamic characteristics of the EBS of this subject. This study in the topic has analyzed the vibroacoustic characteristics of an EBS and optimized its design using numerical simulation. Herein, the contribution of the vibration transfer path from the excitation points on the exterior body to the machine foot is emphatically revealed, and the influences of the main structural parameters on the transfer characteristics are discussed. An optimal EBS for a PGR with lower acoustic vibrations is designed in detail, and a composite EBS with damping vibration attenuation and acoustic absorption is proposed. The radiation acoustic characteristics without acoustic protection and damping materials are analyzed. These research results are implemented in order to realize the dynamic characteristics, transmission, and radiation acoustic characteristics as objects of optimization, and the structural design parameters of the PGR exterior body are deeply optimized using dynamic modification and sensitivity analysis. This topic focuses on the vibroacoustic coupling of EBS in stationary fluid and average flow field, based on the analysis method of theoretical modeling and numerical calculation, the EBS dynamic response and vibroacoustic characteristics under the action of frontal excitation external acoustic flow field are studied, which will be beneficial to explore the comprehensive optimization design of GPR dynamic and vibroacoustic properties.
topic planetary gear reducer
gearbox exterior body structure
vibroacoustic characteristics
natural frequency
vibration type
optimum design
url https://www.jvejournals.com/article/21829
work_keys_str_mv AT shueji numericalsimulationanalysisofapgrexteriorbodystructureconsideringvibroacousticcharacteristics
AT yongmeiwang numericalsimulationanalysisofapgrexteriorbodystructureconsideringvibroacousticcharacteristics
AT xiguiwang numericalsimulationanalysisofapgrexteriorbodystructureconsideringvibroacousticcharacteristics
AT jiafuruan numericalsimulationanalysisofapgrexteriorbodystructureconsideringvibroacousticcharacteristics
AT siyuanan numericalsimulationanalysisofapgrexteriorbodystructureconsideringvibroacousticcharacteristics
AT baixuefu numericalsimulationanalysisofapgrexteriorbodystructureconsideringvibroacousticcharacteristics
_version_ 1721345883698626560