Bifurcation and chaos characteristic analysis of spur micro-segment gear pair

Customers call for better performance, such as miniaturization, low noise, and higher load capacity of gear system. The micro-segment gear is a new tooth form whose tooth profile curve is composed of many micro segments. This paper investigates the bifurcation and chaos characteristics of spur micro...

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Main Authors: Kang Huang, Yangshou Xiong
Format: Article
Language:English
Published: JVE International 2016-11-01
Series:Journal of Vibroengineering
Subjects:
Online Access:https://www.jvejournals.com/article/17129
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spelling doaj-9bb1ea35fdc04dada02f24253fde45762020-11-24T23:12:03ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602016-11-011874792481110.21595/jve.2016.1712917129Bifurcation and chaos characteristic analysis of spur micro-segment gear pairKang Huang0Yangshou Xiong1School of Mechanical Engineering, Hefei University of Technology, Hefei 230009, ChinaSchool of Mechanical Engineering, Hefei University of Technology, Hefei 230009, ChinaCustomers call for better performance, such as miniaturization, low noise, and higher load capacity of gear system. The micro-segment gear is a new tooth form whose tooth profile curve is composed of many micro segments. This paper investigates the bifurcation and chaos characteristics of spur micro-segment gear pair. To improve the authenticity of the solution, the time-varying mesh stiffness is expressed in term of piecewise function, and the normal profile deviation is expressed in the form of Fourier series. The influence of damping coefficient, excitation frequency, internal and external excitation on bifurcation and chaos properties of the system are analyzed. The numerical results show that the dynamic system is very sensitive to damping coefficient. With the increasing of damping coefficient, the number of bifurcation and impressive jump tends to decrease; and the intervals of dimensionless frequency leading to unstable or chaotic motion have a trend to concentration. The influence of external and internal excitation on bifurcation characteristics are also investigated. Comparison results show that, internal excitation has a greater effect than external excitation based on corresponding amplitude-frequency diagrams and bifurcation diagrams.https://www.jvejournals.com/article/17129micro-segment gearnon-linear dynamicsbifurcationchaos
collection DOAJ
language English
format Article
sources DOAJ
author Kang Huang
Yangshou Xiong
spellingShingle Kang Huang
Yangshou Xiong
Bifurcation and chaos characteristic analysis of spur micro-segment gear pair
Journal of Vibroengineering
micro-segment gear
non-linear dynamics
bifurcation
chaos
author_facet Kang Huang
Yangshou Xiong
author_sort Kang Huang
title Bifurcation and chaos characteristic analysis of spur micro-segment gear pair
title_short Bifurcation and chaos characteristic analysis of spur micro-segment gear pair
title_full Bifurcation and chaos characteristic analysis of spur micro-segment gear pair
title_fullStr Bifurcation and chaos characteristic analysis of spur micro-segment gear pair
title_full_unstemmed Bifurcation and chaos characteristic analysis of spur micro-segment gear pair
title_sort bifurcation and chaos characteristic analysis of spur micro-segment gear pair
publisher JVE International
series Journal of Vibroengineering
issn 1392-8716
2538-8460
publishDate 2016-11-01
description Customers call for better performance, such as miniaturization, low noise, and higher load capacity of gear system. The micro-segment gear is a new tooth form whose tooth profile curve is composed of many micro segments. This paper investigates the bifurcation and chaos characteristics of spur micro-segment gear pair. To improve the authenticity of the solution, the time-varying mesh stiffness is expressed in term of piecewise function, and the normal profile deviation is expressed in the form of Fourier series. The influence of damping coefficient, excitation frequency, internal and external excitation on bifurcation and chaos properties of the system are analyzed. The numerical results show that the dynamic system is very sensitive to damping coefficient. With the increasing of damping coefficient, the number of bifurcation and impressive jump tends to decrease; and the intervals of dimensionless frequency leading to unstable or chaotic motion have a trend to concentration. The influence of external and internal excitation on bifurcation characteristics are also investigated. Comparison results show that, internal excitation has a greater effect than external excitation based on corresponding amplitude-frequency diagrams and bifurcation diagrams.
topic micro-segment gear
non-linear dynamics
bifurcation
chaos
url https://www.jvejournals.com/article/17129
work_keys_str_mv AT kanghuang bifurcationandchaoscharacteristicanalysisofspurmicrosegmentgearpair
AT yangshouxiong bifurcationandchaoscharacteristicanalysisofspurmicrosegmentgearpair
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