Dynamic response of a cracked rotor-bearing-seal system

With the structural parameters of the rotation machinery increased, the seal fluid induced force imposed on the rotor will significantly increase. Taking a cracked rotor-bearing-seal system as object the non-linear dynamic behaviours of the coupled system are investigated using numerical integration...

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Main Author: Zhiwei Huang
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/37/matecconf_meae2019_01006.pdf
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spelling doaj-c1227e85c33943aebcb83cfbf303dc482021-02-02T06:44:52ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012880100610.1051/matecconf/201928801006matecconf_meae2019_01006Dynamic response of a cracked rotor-bearing-seal systemZhiwei HuangWith the structural parameters of the rotation machinery increased, the seal fluid induced force imposed on the rotor will significantly increase. Taking a cracked rotor-bearing-seal system as object the non-linear dynamic behaviours of the coupled system are investigated using numerical integration method. For the crack in shaft, the segmented switch function is applied to express the process of the crack’s opening and closing in rotation, and the cross stiffness originated from crack is considered. Various nonlinear phenomena compressing periodic, quasi-periodic and chaotic motions in the rotor system are analysed. The research results show that the unstable form of the rotor system is Hopf bifurcation when the crack depth is smaller. The influence to the response of the system increased along with the crack depth, the unstable form of the coupled system is period-doubling bifurcation. The seal clearance has an important impact on stability of the cracked rotor system. In other words, the fluid induced force can reduce the periodic responses of the rotor. It is indicated that this study can contribution to a further understanding of the nonlinear of such a rotor-bearing system with crack and seal.https://www.matec-conferences.org/articles/matecconf/pdf/2019/37/matecconf_meae2019_01006.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Zhiwei Huang
spellingShingle Zhiwei Huang
Dynamic response of a cracked rotor-bearing-seal system
MATEC Web of Conferences
author_facet Zhiwei Huang
author_sort Zhiwei Huang
title Dynamic response of a cracked rotor-bearing-seal system
title_short Dynamic response of a cracked rotor-bearing-seal system
title_full Dynamic response of a cracked rotor-bearing-seal system
title_fullStr Dynamic response of a cracked rotor-bearing-seal system
title_full_unstemmed Dynamic response of a cracked rotor-bearing-seal system
title_sort dynamic response of a cracked rotor-bearing-seal system
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description With the structural parameters of the rotation machinery increased, the seal fluid induced force imposed on the rotor will significantly increase. Taking a cracked rotor-bearing-seal system as object the non-linear dynamic behaviours of the coupled system are investigated using numerical integration method. For the crack in shaft, the segmented switch function is applied to express the process of the crack’s opening and closing in rotation, and the cross stiffness originated from crack is considered. Various nonlinear phenomena compressing periodic, quasi-periodic and chaotic motions in the rotor system are analysed. The research results show that the unstable form of the rotor system is Hopf bifurcation when the crack depth is smaller. The influence to the response of the system increased along with the crack depth, the unstable form of the coupled system is period-doubling bifurcation. The seal clearance has an important impact on stability of the cracked rotor system. In other words, the fluid induced force can reduce the periodic responses of the rotor. It is indicated that this study can contribution to a further understanding of the nonlinear of such a rotor-bearing system with crack and seal.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/37/matecconf_meae2019_01006.pdf
work_keys_str_mv AT zhiweihuang dynamicresponseofacrackedrotorbearingsealsystem
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