Non-linear dynamic response of misaligned spline coupling: Theoretical modeling and experimental investigation

IF 2.4 3区 工程技术 Q2 ACOUSTICS
Li Xiao, Yingqiang Xu, Zhiyong Chen, Lanfeng Zhang
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引用次数: 5

Abstract

Premature wear, fatigue and other failures caused by non-linear vibration are one of the key problems of aerodynamic power transmission in spline coupling which maybe suffer from abnormal meshing effects due to misalignment between internal spline and external spline. A non-linear dynamic model of the misaligned spline coupling is established, which involves the calculation of dynamic meshing behavior of misaligned tooth pairs. The movement state of spline coupling can change from a periodic state to a chaotic state with the increase of speed. Under light load, the main resonance speed of system may be modified due to changes in the load. The existence of misalignment promotes the vibration intensity, advances the main resonance speed and increases the instability of spline coupling. In addition, a test bench for the misalignment spline coupling was developed to measure the vibration acceleration signal, and the effect of the misalignment on the dynamic behavior of spline coupling was discussed.
非对准样条耦合的非线性动力学响应:理论建模与实验研究
非线性振动引起的过早磨损、疲劳等失效是花键联轴器气动传动的关键问题之一,由于内花键与外花键的错位,可能会产生异常啮合效应。建立了错位花键联轴器的非线性动力学模型,计算了错位齿对的动态啮合行为。随着速度的增加,花键联轴器的运动状态可以从周期状态变为混沌状态。在轻负载情况下,系统的主共振速度可能会因负载的变化而发生变化。错位的存在提高了振动强度,提高了主共振速度,增加了花键联轴器的不稳定性。此外,还开发了一个用于测量振动加速度信号的错位花键联轴器试验台,并讨论了错位对花键联轴器动态性能的影响。
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来源期刊
Journal of Vibration and Control
Journal of Vibration and Control 工程技术-工程:机械
CiteScore
5.20
自引率
17.90%
发文量
336
审稿时长
6 months
期刊介绍: The Journal of Vibration and Control is a peer-reviewed journal of analytical, computational and experimental studies of vibration phenomena and their control. The scope encompasses all linear and nonlinear vibration phenomena and covers topics such as: vibration and control of structures and machinery, signal analysis, aeroelasticity, neural networks, structural control and acoustics, noise and noise control, waves in solids and fluids and shock waves.
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