Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure Flexibility

Taking the planetary gear train of an AT transmission as the research object, the finite element method is used to analyze the dynamic characteristics of the planet carrier, ring gear and housing, and the accuracy of the finite element model of the housing is verified by combining with the modal exp...

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Main Authors: Guangze Zheng, Ya Mei, Jincai Yang
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2021-02-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.02.016
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author Guangze Zheng
Ya Mei
Jincai Yang
author_facet Guangze Zheng
Ya Mei
Jincai Yang
author_sort Guangze Zheng
collection DOAJ
description Taking the planetary gear train of an AT transmission as the research object, the finite element method is used to analyze the dynamic characteristics of the planet carrier, ring gear and housing, and the accuracy of the finite element model of the housing is verified by combining with the modal experiment. The dynamics analysis model of the AT planetary gear system is established and the contact spot experiment is carried out. Through the comparative analysis of the simulation and experimental contact spot results, it is concluded that the meshing spots of the small sun gear-short planet gear and the long planet gear-ring gear pair are basically the same and there is a significant partial load phenomenon. The dynamics model of the AT transmission is obtained by importing the finite element model of the flexible planet carrier, ring gear and housing, and the transmission characteristics of the planet carrier, ring gear and housing flexibility to the planet gears, and the amount of meshing misalignment parameters are analyzed. The results show that the flexible deformation of the casing and the ring gear has the most significant effects on gear misalignment and transmission errors, followed by the planetary carrier flexibility. By improving the support bearing stiffness, bearing preload and gear parameter optimization methods, the planetary gear train gear meshing characteristics are improved, the planetary gear train gear strength and the AT transmission NVH performance are optimized.
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spelling doaj.art-a81b6e3d45c04f3b870debb60064d1282025-01-10T14:54:11ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392021-02-014510411029799888Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure FlexibilityGuangze ZhengYa MeiJincai YangTaking the planetary gear train of an AT transmission as the research object, the finite element method is used to analyze the dynamic characteristics of the planet carrier, ring gear and housing, and the accuracy of the finite element model of the housing is verified by combining with the modal experiment. The dynamics analysis model of the AT planetary gear system is established and the contact spot experiment is carried out. Through the comparative analysis of the simulation and experimental contact spot results, it is concluded that the meshing spots of the small sun gear-short planet gear and the long planet gear-ring gear pair are basically the same and there is a significant partial load phenomenon. The dynamics model of the AT transmission is obtained by importing the finite element model of the flexible planet carrier, ring gear and housing, and the transmission characteristics of the planet carrier, ring gear and housing flexibility to the planet gears, and the amount of meshing misalignment parameters are analyzed. The results show that the flexible deformation of the casing and the ring gear has the most significant effects on gear misalignment and transmission errors, followed by the planetary carrier flexibility. By improving the support bearing stiffness, bearing preload and gear parameter optimization methods, the planetary gear train gear meshing characteristics are improved, the planetary gear train gear strength and the AT transmission NVH performance are optimized.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.02.016AT transmissionStructure flexibilityPlanetary gear trainMeshing characteristic
spellingShingle Guangze Zheng
Ya Mei
Jincai Yang
Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure Flexibility
Jixie chuandong
AT transmission
Structure flexibility
Planetary gear train
Meshing characteristic
title Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure Flexibility
title_full Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure Flexibility
title_fullStr Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure Flexibility
title_full_unstemmed Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure Flexibility
title_short Analysis and Optimization of Meshing Characteristic of Planetary Gear Train Considering Structure Flexibility
title_sort analysis and optimization of meshing characteristic of planetary gear train considering structure flexibility
topic AT transmission
Structure flexibility
Planetary gear train
Meshing characteristic
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.02.016
work_keys_str_mv AT guangzezheng analysisandoptimizationofmeshingcharacteristicofplanetarygeartrainconsideringstructureflexibility
AT yamei analysisandoptimizationofmeshingcharacteristicofplanetarygeartrainconsideringstructureflexibility
AT jincaiyang analysisandoptimizationofmeshingcharacteristicofplanetarygeartrainconsideringstructureflexibility