Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMU

The torsional vibrations of traction drive shafting system of EMU is one of key factors on heavily influence the running smoothness,safety and reliability of high-speed train. The torsional vibrations of a typical traction drive shafting system of EMU are investigated. After a concise introduction,t...

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Main Authors: Zhou Shengtong, Zhu Jingwei, Zhou Xinjian, Sun Yingchao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2017-01-01
Series:Jixie chuandong
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Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2017.07.003
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author Zhou Shengtong
Zhu Jingwei
Zhou Xinjian
Sun Yingchao
author_facet Zhou Shengtong
Zhu Jingwei
Zhou Xinjian
Sun Yingchao
author_sort Zhou Shengtong
collection DOAJ
description The torsional vibrations of traction drive shafting system of EMU is one of key factors on heavily influence the running smoothness,safety and reliability of high-speed train. The torsional vibrations of a typical traction drive shafting system of EMU are investigated. After a concise introduction,the traction drive shafting system is simplified and equivalent to a lumped-parameters model with five moment of inertias and four torsional stiffness coefficients. Then,considering the meshing relationship of driving and driven gears,an undamped free torsional vibration equation of this lumped model is established by using direct stiffness method. At last,the natural frequency and mode shapes of this shafting system are obtained with the help of MATLAB software. On the other hand,a MATLAB/Simulink simulation model is also constructed according to above lumped-parameters model equation. And subsequently,the acceleration and displacement Bode plots of shafting system are calculated from this simulation model,these amplitude-frequency results are very useful to verify the natural frequencies obtained directly from the lumped model equation. Results show that the established lumped mass model is available to simulate the torsional vibration characteristics of traction drive shafting system,and the torsional resonance and fatigue problems may mainly happen on the driving side of shafting system. The research works are very useful for the future study on the dynamic design and optimization of traction drive shafting system of EMU.
format Article
id doaj-art-6530ff71b25f4f51a682417f0ad513d9
institution Kabale University
issn 1004-2539
language zho
publishDate 2017-01-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-6530ff71b25f4f51a682417f0ad513d92025-01-10T14:22:22ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392017-01-0141121729931447Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMUZhou ShengtongZhu JingweiZhou XinjianSun YingchaoThe torsional vibrations of traction drive shafting system of EMU is one of key factors on heavily influence the running smoothness,safety and reliability of high-speed train. The torsional vibrations of a typical traction drive shafting system of EMU are investigated. After a concise introduction,the traction drive shafting system is simplified and equivalent to a lumped-parameters model with five moment of inertias and four torsional stiffness coefficients. Then,considering the meshing relationship of driving and driven gears,an undamped free torsional vibration equation of this lumped model is established by using direct stiffness method. At last,the natural frequency and mode shapes of this shafting system are obtained with the help of MATLAB software. On the other hand,a MATLAB/Simulink simulation model is also constructed according to above lumped-parameters model equation. And subsequently,the acceleration and displacement Bode plots of shafting system are calculated from this simulation model,these amplitude-frequency results are very useful to verify the natural frequencies obtained directly from the lumped model equation. Results show that the established lumped mass model is available to simulate the torsional vibration characteristics of traction drive shafting system,and the torsional resonance and fatigue problems may mainly happen on the driving side of shafting system. The research works are very useful for the future study on the dynamic design and optimization of traction drive shafting system of EMU.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2017.07.003Traction drive shafting systemTorsional vibration characteristicLumped-parameter modelSimulation model
spellingShingle Zhou Shengtong
Zhu Jingwei
Zhou Xinjian
Sun Yingchao
Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMU
Jixie chuandong
Traction drive shafting system
Torsional vibration characteristic
Lumped-parameter model
Simulation model
title Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMU
title_full Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMU
title_fullStr Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMU
title_full_unstemmed Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMU
title_short Analysis of the Torsional Vibration Characteristic of Traction Drive Shafting System of EMU
title_sort analysis of the torsional vibration characteristic of traction drive shafting system of emu
topic Traction drive shafting system
Torsional vibration characteristic
Lumped-parameter model
Simulation model
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2017.07.003
work_keys_str_mv AT zhoushengtong analysisofthetorsionalvibrationcharacteristicoftractiondriveshaftingsystemofemu
AT zhujingwei analysisofthetorsionalvibrationcharacteristicoftractiondriveshaftingsystemofemu
AT zhouxinjian analysisofthetorsionalvibrationcharacteristicoftractiondriveshaftingsystemofemu
AT sunyingchao analysisofthetorsionalvibrationcharacteristicoftractiondriveshaftingsystemofemu