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Effects of intermediate support stiffness on nonlinear dynamic response of transmission system

机译:中间支撑刚度对变速器系统非线性动力响应的影响

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摘要

This study is aimed at investigating the effects of intermediate support stiffness on nonlinear vibration response of transmission system. A coupled bending-torsional-lateral dynamic model with 14 degrees of freedom of transmission system is proposed comprehensively considering rubber dynamic stiffness, time-varying stiffness, static transmission error, and backlash. Meanwhile, a model of intermediate support with rubber nonlinear properties is developed to improve the accuracy of analysis. On the basis of the nonlinear differential equations derived by the lumped-parameter method, the dynamic responses of the key parts in the transmission system are obtained using the Runge-Kutta method and the effects of intermediate support stiffness on the dynamic characteristics are analyzed. Numerical results show that complicated interaction occurs and intermediate support stiffness has a great influence on the vibration of the coupled system. With the increase in the intermediate support stiffness, the vibration displacements in the three directions of the gear are progressively reduced and the nature frequencies are changed. The influence of the radial stiffness is greater than that of the axial stiffness. An experiment is performed subsequently to validate the effect of intermediate support stiffness on system, and the experimental results are consistent with numerical ones.
机译:本研究旨在研究中间支撑刚度对变速箱系统非线性振动响应的影响。提出了一种耦合弯曲扭转横向动态模型,其综合考虑橡胶动态刚度,时变刚度,静态传输误差和间隙。同时,开发了一种具有橡胶非线性性质的中间支撑模型以提高分析的准确性。基于由集合参数方法导出的非线性微分方程,使用跳动-Kutta方法获得传输系统中的关键部件的动态响应,分析了中间支撑刚度对动态特性的影响。数值结果表明,发生复杂的相互作用,中间支撑刚度对耦合系统的振动产生很大影响。随着中间支撑刚度的增加,齿轮的三个方向上的振动位移逐渐减小,并且改变了自然频率。径向刚度的影响大于轴向刚度的影响。随后进行实验以验证中间体支撑刚度对系统的影响,实验结果与数值符合。

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