Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness

ObjectiveThe cycloidal pin gear reducer is popularized and applied for its high transmission ratio and compact structure. The transmission accuracy and smoothness of the cycloidal pin gear reducer is poor due to the high contact stress and low meshing stiffness between the cycloidal and pin gear. Fo...

Full description

Saved in:
Bibliographic Details
Main Authors: SU Jianxin, WANG Dongfeng, XU Jiake, ZHANG Jing, LÜ Ruifang
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2025-04-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2025.04.001
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849730000313384960
author SU Jianxin
WANG Dongfeng
XU Jiake
ZHANG Jing
LÜ Ruifang
author_facet SU Jianxin
WANG Dongfeng
XU Jiake
ZHANG Jing
LÜ Ruifang
author_sort SU Jianxin
collection DOAJ
description ObjectiveThe cycloidal pin gear reducer is popularized and applied for its high transmission ratio and compact structure. The transmission accuracy and smoothness of the cycloidal pin gear reducer is poor due to the high contact stress and low meshing stiffness between the cycloidal and pin gear. For the sake of further improving the load-bearing performance of the reducer, the analysis method was conducted to research the effect of structural parameters on the meshing stiffness by means of calculation and simulation.MethodsIn order to optimize its load-bearing performance, a mathematical analysis model of contact stress and meshing stiffness was proposed regarding the important structural parameters of cycloidal pin gear, as the design variables such as needle tooth distribution circle radius, eccentricity, and pin tooth radius; the VB.NET software was applied to calculate and analyze the influence of structural parameters of the cycloidal pin gear on the meshing stiffness, contact stress, meshing force, and torsional stiffness of the cycloidal pin gears pair.ResultsThe results of calculation and simulation indicate that the meshing stiffness and torsional stiffness of cycloidal pin gear increase with the increase of the radius of the distribution circle and eccentricity and the decrease of the radius of the teeth. The research provides foundation for the design and optimization of the structure of cycloidal pin gear reducers.
format Article
id doaj-art-e8221823f00e45aab8b10b936b68a1c0
institution DOAJ
issn 1004-2539
language zho
publishDate 2025-04-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-e8221823f00e45aab8b10b936b68a1c02025-08-20T03:09:00ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392025-04-01491750490740Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffnessSU JianxinWANG DongfengXU JiakeZHANG JingLÜ RuifangObjectiveThe cycloidal pin gear reducer is popularized and applied for its high transmission ratio and compact structure. The transmission accuracy and smoothness of the cycloidal pin gear reducer is poor due to the high contact stress and low meshing stiffness between the cycloidal and pin gear. For the sake of further improving the load-bearing performance of the reducer, the analysis method was conducted to research the effect of structural parameters on the meshing stiffness by means of calculation and simulation.MethodsIn order to optimize its load-bearing performance, a mathematical analysis model of contact stress and meshing stiffness was proposed regarding the important structural parameters of cycloidal pin gear, as the design variables such as needle tooth distribution circle radius, eccentricity, and pin tooth radius; the VB.NET software was applied to calculate and analyze the influence of structural parameters of the cycloidal pin gear on the meshing stiffness, contact stress, meshing force, and torsional stiffness of the cycloidal pin gears pair.ResultsThe results of calculation and simulation indicate that the meshing stiffness and torsional stiffness of cycloidal pin gear increase with the increase of the radius of the distribution circle and eccentricity and the decrease of the radius of the teeth. The research provides foundation for the design and optimization of the structure of cycloidal pin gear reducers.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2025.04.001Cycloidal pin wheelContact stressMeshing stiffnessStructural parameter
spellingShingle SU Jianxin
WANG Dongfeng
XU Jiake
ZHANG Jing
LÜ Ruifang
Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness
Jixie chuandong
Cycloidal pin wheel
Contact stress
Meshing stiffness
Structural parameter
title Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness
title_full Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness
title_fullStr Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness
title_full_unstemmed Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness
title_short Research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness
title_sort research on calculation and simulating analysis of cycloidal pin wheel meshing stiffness
topic Cycloidal pin wheel
Contact stress
Meshing stiffness
Structural parameter
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2025.04.001
work_keys_str_mv AT sujianxin researchoncalculationandsimulatinganalysisofcycloidalpinwheelmeshingstiffness
AT wangdongfeng researchoncalculationandsimulatinganalysisofcycloidalpinwheelmeshingstiffness
AT xujiake researchoncalculationandsimulatinganalysisofcycloidalpinwheelmeshingstiffness
AT zhangjing researchoncalculationandsimulatinganalysisofcycloidalpinwheelmeshingstiffness
AT luruifang researchoncalculationandsimulatinganalysisofcycloidalpinwheelmeshingstiffness