Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor System

A dual-pendulum-rotor system widely appears in aero-power plant, mining screening machines, parallel robots, and the like of the other rotation equipment. Unfortunately, the synchronous behavior related to the dual-pendulum-rotor system is less reported. Based on the special backgrounds, a simplifie...

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Main Authors: Fang Pan, Hou Yongjun, Dai Liming, Du Mingjun
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2018/9824631
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author Fang Pan
Hou Yongjun
Dai Liming
Du Mingjun
author_facet Fang Pan
Hou Yongjun
Dai Liming
Du Mingjun
author_sort Fang Pan
collection DOAJ
description A dual-pendulum-rotor system widely appears in aero-power plant, mining screening machines, parallel robots, and the like of the other rotation equipment. Unfortunately, the synchronous behavior related to the dual-pendulum-rotor system is less reported. Based on the special backgrounds, a simplified mechanical model of the dual-pendulum-rotor system is proposed in the paper, and the intrinsic mechanisms of synchronous phenomenon in the system are further revealed with employing the Poincaré method. The research results show that the spring stiffness, the installation angular of the motor, and rotation direction of the rotors have a large influence on the existence and stability of the synchronization state in the coupling system, and the mass ratios of the system are irrelevant to the synchronous state of the system. It should be noted that to ensure the implementation of the synchronization of the system, the values of the parameters of the system should be far away to the two “critical points”.
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institution Kabale University
issn 1070-9622
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language English
publishDate 2018-01-01
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series Shock and Vibration
spelling doaj-art-ab36e4b3d95e4dfd9e4f46354928fc3f2025-08-20T03:39:40ZengWileyShock and Vibration1070-96221875-92032018-01-01201810.1155/2018/98246319824631Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor SystemFang Pan0Hou Yongjun1Dai Liming2Du Mingjun3School of Mechanical Engineering, Southwest Petroleum University, Chengdu, ChinaSchool of Mechanical Engineering, Southwest Petroleum University, Chengdu, ChinaUniversity of Regina, Regina, CanadaSchool of Mechanical Engineering, Southwest Petroleum University, Chengdu, ChinaA dual-pendulum-rotor system widely appears in aero-power plant, mining screening machines, parallel robots, and the like of the other rotation equipment. Unfortunately, the synchronous behavior related to the dual-pendulum-rotor system is less reported. Based on the special backgrounds, a simplified mechanical model of the dual-pendulum-rotor system is proposed in the paper, and the intrinsic mechanisms of synchronous phenomenon in the system are further revealed with employing the Poincaré method. The research results show that the spring stiffness, the installation angular of the motor, and rotation direction of the rotors have a large influence on the existence and stability of the synchronization state in the coupling system, and the mass ratios of the system are irrelevant to the synchronous state of the system. It should be noted that to ensure the implementation of the synchronization of the system, the values of the parameters of the system should be far away to the two “critical points”.http://dx.doi.org/10.1155/2018/9824631
spellingShingle Fang Pan
Hou Yongjun
Dai Liming
Du Mingjun
Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor System
Shock and Vibration
title Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor System
title_full Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor System
title_fullStr Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor System
title_full_unstemmed Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor System
title_short Theoretical Study of Synchronous Behavior in a Dual-Pendulum-Rotor System
title_sort theoretical study of synchronous behavior in a dual pendulum rotor system
url http://dx.doi.org/10.1155/2018/9824631
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AT dailiming theoreticalstudyofsynchronousbehaviorinadualpendulumrotorsystem
AT dumingjun theoreticalstudyofsynchronousbehaviorinadualpendulumrotorsystem