Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission System

In the operating process, it is found the vibration of main reducer reaches a maximum value when certain types of vehicles are running at a speed around 4000 RPM. However, how the rotation speed of engine affects the vibration responses to automobile transmission system has not been investigated the...

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Main Authors: Liu Xiaogang, Wu Zhaoyu, Lu Jie, Xu Jinli
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201925602019
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spelling doaj-94488cfd7cf14a7e8b5454c6491a13772021-02-02T08:46:47ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012560201910.1051/matecconf/201925602019matecconf_icmme2019_02019Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission SystemLiu XiaogangWu ZhaoyuLu JieXu JinliIn the operating process, it is found the vibration of main reducer reaches a maximum value when certain types of vehicles are running at a speed around 4000 RPM. However, how the rotation speed of engine affects the vibration responses to automobile transmission system has not been investigated theoretically in details. To investigate this problem, the transmission system of automobile is simplified to a drive-final shaft system in this research, and a coupled vibration model of drive-final shaft system is developed. This model is used to simulate the vibration response to transmission system at different rotation speeds. Simulation results show that the torsional vibration responses reach the maximum when the rotation speeds are 3800 RPM and 4200 RPM and the vibration responses of pinion reach the maximum value when the rotation speeds are 4000 RPM and 4200 RPM. Moreover, finite element analysis is conducted to investigate the reason for this phenomenon. It is found that the torsional vibration responses reach the maximum value when the excitation frequency of engine is close to the resonance frequency of drive shafts. This research provides an effective method to analyse the vibration characteristics of automobile transmission system.https://doi.org/10.1051/matecconf/201925602019
collection DOAJ
language English
format Article
sources DOAJ
author Liu Xiaogang
Wu Zhaoyu
Lu Jie
Xu Jinli
spellingShingle Liu Xiaogang
Wu Zhaoyu
Lu Jie
Xu Jinli
Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission System
MATEC Web of Conferences
author_facet Liu Xiaogang
Wu Zhaoyu
Lu Jie
Xu Jinli
author_sort Liu Xiaogang
title Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission System
title_short Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission System
title_full Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission System
title_fullStr Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission System
title_full_unstemmed Investigation of the Effect of Rotation Speed on Vibration Responses of Transmission System
title_sort investigation of the effect of rotation speed on vibration responses of transmission system
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description In the operating process, it is found the vibration of main reducer reaches a maximum value when certain types of vehicles are running at a speed around 4000 RPM. However, how the rotation speed of engine affects the vibration responses to automobile transmission system has not been investigated theoretically in details. To investigate this problem, the transmission system of automobile is simplified to a drive-final shaft system in this research, and a coupled vibration model of drive-final shaft system is developed. This model is used to simulate the vibration response to transmission system at different rotation speeds. Simulation results show that the torsional vibration responses reach the maximum when the rotation speeds are 3800 RPM and 4200 RPM and the vibration responses of pinion reach the maximum value when the rotation speeds are 4000 RPM and 4200 RPM. Moreover, finite element analysis is conducted to investigate the reason for this phenomenon. It is found that the torsional vibration responses reach the maximum value when the excitation frequency of engine is close to the resonance frequency of drive shafts. This research provides an effective method to analyse the vibration characteristics of automobile transmission system.
url https://doi.org/10.1051/matecconf/201925602019
work_keys_str_mv AT liuxiaogang investigationoftheeffectofrotationspeedonvibrationresponsesoftransmissionsystem
AT wuzhaoyu investigationoftheeffectofrotationspeedonvibrationresponsesoftransmissionsystem
AT lujie investigationoftheeffectofrotationspeedonvibrationresponsesoftransmissionsystem
AT xujinli investigationoftheeffectofrotationspeedonvibrationresponsesoftransmissionsystem
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