Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed Stiffnesses

Vibration properties of high-speed rotating and revolving planet rings with discrete and partially distributed stiffnesses were studied. The governing equations were obtained by Hamilton’s principle based on a rotating frame on the ring. The governing equations were cast in matrix differential opera...

Full description

Bibliographic Details
Main Authors: Fuchun Yang, Dianrui Wang
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/1/127
id doaj-02cbae3c35574c7dae6480e3c0e50928
record_format Article
spelling doaj-02cbae3c35574c7dae6480e3c0e509282020-12-25T00:05:40ZengMDPI AGApplied Sciences2076-34172021-12-011112712710.3390/app11010127Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed StiffnessesFuchun Yang0Dianrui Wang1Key Laboratory of High Efficiency and Clean Mechanical Manufacture of MOE, School of Mechanical Engineering, Shandong University, Jinan 250061, ChinaKey Laboratory of High Efficiency and Clean Mechanical Manufacture of MOE, School of Mechanical Engineering, Shandong University, Jinan 250061, ChinaVibration properties of high-speed rotating and revolving planet rings with discrete and partially distributed stiffnesses were studied. The governing equations were obtained by Hamilton’s principle based on a rotating frame on the ring. The governing equations were cast in matrix differential operators and discretized, using Galerkin’s method. The eigenvalue problem was dealt with state space matrix, and the natural frequencies and vibration modes were computed in a wide range of rotation speed. The properties of natural frequencies and vibration modes with rotation speed were studied for free planet rings and planet rings with discrete and partially distributed stiffnesses. The influences of several parameters on the vibration properties of planet rings were also investigated. Finally, the forced responses of planet rings resulted from the excitation of rotating and revolving movement were studied. The results show that the revolving movement not only affects the free vibration of planet rings but results in excitation to the rings. Partially distributed stiffness changes the vibration modes heavily compared to the free planet ring. Each vibration mode comprises several nodal diameter components instead of a single component for a free planet ring. The distribution area and the number of partially distributed stiffnesses mainly affect the high-order frequencies. The forced responses caused by revolving movement are nonlinear and vary with a quasi-period of rotating speed, and the responses in the regions supported by partially distributed stiffnesses are suppressed.https://www.mdpi.com/2076-3417/11/1/127vibrationplanet ringrevolving movementpartially distributed stiffness
collection DOAJ
language English
format Article
sources DOAJ
author Fuchun Yang
Dianrui Wang
spellingShingle Fuchun Yang
Dianrui Wang
Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed Stiffnesses
Applied Sciences
vibration
planet ring
revolving movement
partially distributed stiffness
author_facet Fuchun Yang
Dianrui Wang
author_sort Fuchun Yang
title Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed Stiffnesses
title_short Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed Stiffnesses
title_full Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed Stiffnesses
title_fullStr Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed Stiffnesses
title_full_unstemmed Vibration of Rotating and Revolving Planet Rings with Discrete and Partially Distributed Stiffnesses
title_sort vibration of rotating and revolving planet rings with discrete and partially distributed stiffnesses
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2021-12-01
description Vibration properties of high-speed rotating and revolving planet rings with discrete and partially distributed stiffnesses were studied. The governing equations were obtained by Hamilton’s principle based on a rotating frame on the ring. The governing equations were cast in matrix differential operators and discretized, using Galerkin’s method. The eigenvalue problem was dealt with state space matrix, and the natural frequencies and vibration modes were computed in a wide range of rotation speed. The properties of natural frequencies and vibration modes with rotation speed were studied for free planet rings and planet rings with discrete and partially distributed stiffnesses. The influences of several parameters on the vibration properties of planet rings were also investigated. Finally, the forced responses of planet rings resulted from the excitation of rotating and revolving movement were studied. The results show that the revolving movement not only affects the free vibration of planet rings but results in excitation to the rings. Partially distributed stiffness changes the vibration modes heavily compared to the free planet ring. Each vibration mode comprises several nodal diameter components instead of a single component for a free planet ring. The distribution area and the number of partially distributed stiffnesses mainly affect the high-order frequencies. The forced responses caused by revolving movement are nonlinear and vary with a quasi-period of rotating speed, and the responses in the regions supported by partially distributed stiffnesses are suppressed.
topic vibration
planet ring
revolving movement
partially distributed stiffness
url https://www.mdpi.com/2076-3417/11/1/127
work_keys_str_mv AT fuchunyang vibrationofrotatingandrevolvingplanetringswithdiscreteandpartiallydistributedstiffnesses
AT dianruiwang vibrationofrotatingandrevolvingplanetringswithdiscreteandpartiallydistributedstiffnesses
_version_ 1724371414446768128