Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical Behavior

The core transmission unit of the star gear drive reducer is a small-tooth-difference multi-tooth meshing gear train, which involves gears with multi-tooth elastic contact meshing, shaft-hole contact, and crankshaft rotation and so on drive relationship, gear motion includes fixed-axis rotation and...

Full description

Bibliographic Details
Main Authors: Jianfang Xia, Qicheng He, Dongyang Liu, Fangjun Gao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2020-01-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2020.11.004
_version_ 1797819624887156736
author Jianfang Xia
Qicheng He
Dongyang Liu
Fangjun Gao
author_facet Jianfang Xia
Qicheng He
Dongyang Liu
Fangjun Gao
author_sort Jianfang Xia
collection DOAJ
description The core transmission unit of the star gear drive reducer is a small-tooth-difference multi-tooth meshing gear train, which involves gears with multi-tooth elastic contact meshing, shaft-hole contact, and crankshaft rotation and so on drive relationship, gear motion includes fixed-axis rotation and compound rotation (rotation and translation).The relationship between mechanics and kinematics is more complicated, and there is no relevant theory in the calculation of strength, deformation and so on. In order to obtain the gear contact strength and bending strength, based on the mechanical theory and computational mechanics simulation methods, under the premise of meeting the requirements of engineering calculation accuracy, a simplified method of the finite element physical model under the complex mechanical behavior of a multi-tooth meshing gear train is explored, and how to deal with simulation problems such as simplification of crankshafts and bearings, meshing of gear teeth, contact convergence, etc. The simulation process is demonstrated by an example. The result shows that, the star gear drive case has the phenomenon of multi-tooth contact elastic meshing, and the number of contact tooth pairs is in line with expectations. The contact stress of the tooth surface and the bending stress of the tooth root are calculated by simulation and can meet the design requirements, it shows that the correctness of the simulation method. Its simulation technology has important guiding significance for the strength calculation and improved design of star gear drive.
first_indexed 2024-03-13T09:25:23Z
format Article
id doaj.art-a39018421df747b7b3e23b47ad775b47
institution Directory Open Access Journal
issn 1004-2539
language zho
last_indexed 2024-03-13T09:25:23Z
publishDate 2020-01-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj.art-a39018421df747b7b3e23b47ad775b472023-05-26T09:35:15ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392020-01-0144212629792116Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical BehaviorJianfang XiaQicheng HeDongyang LiuFangjun GaoThe core transmission unit of the star gear drive reducer is a small-tooth-difference multi-tooth meshing gear train, which involves gears with multi-tooth elastic contact meshing, shaft-hole contact, and crankshaft rotation and so on drive relationship, gear motion includes fixed-axis rotation and compound rotation (rotation and translation).The relationship between mechanics and kinematics is more complicated, and there is no relevant theory in the calculation of strength, deformation and so on. In order to obtain the gear contact strength and bending strength, based on the mechanical theory and computational mechanics simulation methods, under the premise of meeting the requirements of engineering calculation accuracy, a simplified method of the finite element physical model under the complex mechanical behavior of a multi-tooth meshing gear train is explored, and how to deal with simulation problems such as simplification of crankshafts and bearings, meshing of gear teeth, contact convergence, etc. The simulation process is demonstrated by an example. The result shows that, the star gear drive case has the phenomenon of multi-tooth contact elastic meshing, and the number of contact tooth pairs is in line with expectations. The contact stress of the tooth surface and the bending stress of the tooth root are calculated by simulation and can meet the design requirements, it shows that the correctness of the simulation method. Its simulation technology has important guiding significance for the strength calculation and improved design of star gear drive.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2020.11.004Star gear drive;Multi-tooth meshing;Connector
spellingShingle Jianfang Xia
Qicheng He
Dongyang Liu
Fangjun Gao
Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical Behavior
Jixie chuandong
Star gear drive;Multi-tooth meshing;Connector
title Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical Behavior
title_full Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical Behavior
title_fullStr Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical Behavior
title_full_unstemmed Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical Behavior
title_short Research of the Finite Element Simulation Method of Multi-tooth Meshing Gear Train Under Complex Mechanical Behavior
title_sort research of the finite element simulation method of multi tooth meshing gear train under complex mechanical behavior
topic Star gear drive;Multi-tooth meshing;Connector
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2020.11.004
work_keys_str_mv AT jianfangxia researchofthefiniteelementsimulationmethodofmultitoothmeshinggeartrainundercomplexmechanicalbehavior
AT qichenghe researchofthefiniteelementsimulationmethodofmultitoothmeshinggeartrainundercomplexmechanicalbehavior
AT dongyangliu researchofthefiniteelementsimulationmethodofmultitoothmeshinggeartrainundercomplexmechanicalbehavior
AT fangjungao researchofthefiniteelementsimulationmethodofmultitoothmeshinggeartrainundercomplexmechanicalbehavior