Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance
The paper describes some features of behavior of a mechanical system with self-synchronizing vibroexciters. The influence of friction torque in the bearings of vibroexciters rotors on their self-synchronization has been established by means of experimental research and mathematical simulation. Both...
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2017-11-01
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doaj-7e7e66b906ab41e3be4562fe72bd17602020-11-25T02:32:55ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602017-11-011974911492010.21595/jve.2017.1931319313Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonanceSergey Eremeykin0Grigory Panovko1Alexander Shokhin2Mechanical Engineering Research Institute of Russian Academy of Sciences, Moscow, RussiaMechanical Engineering Research Institute of Russian Academy of Sciences, Moscow, RussiaMechanical Engineering Research Institute of Russian Academy of Sciences, Moscow, RussiaThe paper describes some features of behavior of a mechanical system with self-synchronizing vibroexciters. The influence of friction torque in the bearings of vibroexciters rotors on their self-synchronization has been established by means of experimental research and mathematical simulation. Both the causes and frequency ranges of gaps in frequency responses has been found out. Further modification of the previously proposed algorithm for resonant tuning has expanded working regimes limits of the control system and improved resonant tuning stability.https://www.jvejournals.com/article/19313resonant tuningself-synchronizationlimited capacitynonlinear oscillationsdebalance exciter |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sergey Eremeykin Grigory Panovko Alexander Shokhin |
spellingShingle |
Sergey Eremeykin Grigory Panovko Alexander Shokhin Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance Journal of Vibroengineering resonant tuning self-synchronization limited capacity nonlinear oscillations debalance exciter |
author_facet |
Sergey Eremeykin Grigory Panovko Alexander Shokhin |
author_sort |
Sergey Eremeykin |
title |
Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance |
title_short |
Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance |
title_full |
Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance |
title_fullStr |
Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance |
title_full_unstemmed |
Features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance |
title_sort |
features of dynamics of mechanical system with self-synchronizing vibroexciters near resonance |
publisher |
JVE International |
series |
Journal of Vibroengineering |
issn |
1392-8716 2538-8460 |
publishDate |
2017-11-01 |
description |
The paper describes some features of behavior of a mechanical system with self-synchronizing vibroexciters. The influence of friction torque in the bearings of vibroexciters rotors on their self-synchronization has been established by means of experimental research and mathematical simulation. Both the causes and frequency ranges of gaps in frequency responses has been found out. Further modification of the previously proposed algorithm for resonant tuning has expanded working regimes limits of the control system and improved resonant tuning stability. |
topic |
resonant tuning self-synchronization limited capacity nonlinear oscillations debalance exciter |
url |
https://www.jvejournals.com/article/19313 |
work_keys_str_mv |
AT sergeyeremeykin featuresofdynamicsofmechanicalsystemwithselfsynchronizingvibroexcitersnearresonance AT grigorypanovko featuresofdynamicsofmechanicalsystemwithselfsynchronizingvibroexcitersnearresonance AT alexandershokhin featuresofdynamicsofmechanicalsystemwithselfsynchronizingvibroexcitersnearresonance |
_version_ |
1724816824884789248 |