Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear Springs
This work is a continuation and verification of the original literature by using experimental strategy. Based on the published paper, in order to avoid anti-phase synchronization with two co-rotating rotors system, a vibrating system with two co-rotating rotors installed with nonlinear springs have...
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IEEE
2020-01-01
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Series: | IEEE Access |
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Online Access: | https://ieeexplore.ieee.org/document/9006838/ |
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author | Mingjun Du Yongjun Hou Cheng Yu Wei Wang Duyu Hou Guang Xiong |
author_facet | Mingjun Du Yongjun Hou Cheng Yu Wei Wang Duyu Hou Guang Xiong |
author_sort | Mingjun Du |
collection | DOAJ |
description | This work is a continuation and verification of the original literature by using experimental strategy. Based on the published paper, in order to avoid anti-phase synchronization with two co-rotating rotors system, a vibrating system with two co-rotating rotors installed with nonlinear springs have been proposed, and then, the synchronous condition and the synchronous criterion of the system are theoretically derived. From the analysis mentioned, it is shown that the synchronous state is mainly determined by the structural parameters of the coupling unit, coupling coefficients and positional parameters of the two exciters, etc. The main objective of the present work is to investigate the synchronous mechanism by experiments and simulations in this paper. Some simulation computations are firstly implemented to explain the synchronous mechanism of the system. Additionally, an experimental strategy with synchronous tests and dynamic characteristic tests of the vibrating system are carried out to validate the correctness of the simulation analysis. The simulations and experiments demonstrate that the nonlinear springs can overcome the difference of residual torques of the two motors to realize the synchronization of near zero phase difference under the condition of in-phase difference between two exciters. Finally, the error analysis results among the dynamic testing, synchronous testing results and simulations are discussed. This research can provide theoretical reference for designing large-sized and heavy-duty Vibrating Screens. |
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id | doaj.art-8f077a16406e4a0ea2c4703eeb2ae75b |
institution | Directory Open Access Journal |
issn | 2169-3536 |
language | English |
last_indexed | 2024-12-17T05:46:36Z |
publishDate | 2020-01-01 |
publisher | IEEE |
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series | IEEE Access |
spelling | doaj.art-8f077a16406e4a0ea2c4703eeb2ae75b2022-12-21T22:01:17ZengIEEEIEEE Access2169-35362020-01-018482264824010.1109/ACCESS.2020.29755909006838Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear SpringsMingjun Du0https://orcid.org/0000-0002-6615-4614Yongjun Hou1https://orcid.org/0000-0003-2000-4335Cheng Yu2Wei Wang3Duyu Hou4Guang Xiong5School of Mechatronics Engineering, Southwest Petroleum University, Chengdu, ChinaSchool of Mechatronics Engineering, Southwest Petroleum University, Chengdu, ChinaSchool of Intelligent Manufacturing, Chengdu Technological University, Chengdu, ChinaSchool of Mechatronics Engineering, Southwest Petroleum University, Chengdu, ChinaSchool of Mechatronics Engineering, Southwest Petroleum University, Chengdu, ChinaSchool of Mechatronics Engineering, Southwest Petroleum University, Chengdu, ChinaThis work is a continuation and verification of the original literature by using experimental strategy. Based on the published paper, in order to avoid anti-phase synchronization with two co-rotating rotors system, a vibrating system with two co-rotating rotors installed with nonlinear springs have been proposed, and then, the synchronous condition and the synchronous criterion of the system are theoretically derived. From the analysis mentioned, it is shown that the synchronous state is mainly determined by the structural parameters of the coupling unit, coupling coefficients and positional parameters of the two exciters, etc. The main objective of the present work is to investigate the synchronous mechanism by experiments and simulations in this paper. Some simulation computations are firstly implemented to explain the synchronous mechanism of the system. Additionally, an experimental strategy with synchronous tests and dynamic characteristic tests of the vibrating system are carried out to validate the correctness of the simulation analysis. The simulations and experiments demonstrate that the nonlinear springs can overcome the difference of residual torques of the two motors to realize the synchronization of near zero phase difference under the condition of in-phase difference between two exciters. Finally, the error analysis results among the dynamic testing, synchronous testing results and simulations are discussed. This research can provide theoretical reference for designing large-sized and heavy-duty Vibrating Screens.https://ieeexplore.ieee.org/document/9006838/Experimental strategysynchronous conditionsynchronous criterionvibrating screens |
spellingShingle | Mingjun Du Yongjun Hou Cheng Yu Wei Wang Duyu Hou Guang Xiong Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear Springs IEEE Access Experimental strategy synchronous condition synchronous criterion vibrating screens |
title | Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear Springs |
title_full | Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear Springs |
title_fullStr | Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear Springs |
title_full_unstemmed | Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear Springs |
title_short | Experimental Investigation on Synchronization of Two Co-Rating Rotors Coupled With Nonlinear Springs |
title_sort | experimental investigation on synchronization of two co rating rotors coupled with nonlinear springs |
topic | Experimental strategy synchronous condition synchronous criterion vibrating screens |
url | https://ieeexplore.ieee.org/document/9006838/ |
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