首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Analysis of coupled lateral-torsional vibration response of a geared shaft rotor system with and without gyroscopic effect
【24h】

Analysis of coupled lateral-torsional vibration response of a geared shaft rotor system with and without gyroscopic effect

机译:陀螺轴承术轴转子系统的耦合横向振动响应分析

获取原文
获取原文并翻译 | 示例
           

摘要

A torsional gear dynamic model and a coupled lateral-torsional geared shaft rotor dynamic model are developed considering the time-varying mesh stiffness, backlash, and static transmission error excitation. The torsional dynamic transmission error responses gained from the torsional gear dynamic model and coupled lateral-torsional geared shaft rotor dynamic model are compared. The natural frequencies and mode shapes of the geared shaft rotor system are given and the frequency whirling behaviors are analyzed based on the Campbell diagram. The influences of gyroscopic effects of rotating shafts and meshing gear rotors on the lateral-torsional vibration responses of the geared shaft rotor system are talked about and some conclusions are drawn. (1) The coupled lateral-torsional geared shaft rotor dynamic model could reflect the jump phenomenon of dynamic responses near the critical speed of the gear pair as well as the pure torsional gear dynamic model and it can give more vibration features caused by geared shaft and bearings than the torsional gear dynamic model. (2) When the gear pair is set in the midpoint of the shaft, the influences of the gyroscopic effects on the gear pair's lateral vibration responses are light and only can be observed near the high critical speeds. However, when the displacements from the gear body to the bearings are not the same, the influences of the gyroscopic effects on the lateral and torsional vibration responses are obvious and can be located both near the low critical speeds and the high critical speeds corresponding to the forward and backward whirling frequency. (3) The influences of the gyroscopic effects on the lateral and torsional vibration responses of the pinion are more obvious than those on the vibration responses of the gear. In addition, relative to the torsional vibration, the lateral vibration of the gear pair is more easily affected by the gyroscopic effect.
机译:考虑时变网刚度,间隙和静态传输错误激发,开发了一种扭转齿轮动态模型和耦合的横向扭转轴转子动力学模型。比较了从扭转齿轮动态模型和耦合横向扭转轴转子动态模型中获得的扭转动态传输错误响应。给出了齿轮轴转子系统的固有频率和模式形状,并且基于坎贝尔图分析了频率旋转行为。旋转轴和啮合齿轮转子对齿轮轴转子系统的横向振动响应的影响,涉及旋转轴和啮合齿轮转子的影响,并绘制了一些结论。 (1)(1)耦合的横向扭转轴转子动态模型可以反映齿轮副临界速度附近的动态响应的跳跃现象以及纯扭转齿轮动力学模型,可以提供由齿轮轴和齿轮造成的振动特征轴承比扭转齿轮动态模型。 (2)当在轴的中点设定齿轮对时,陀螺效应对齿轮对的横向振动响应的影响是光,并且只能在高临界速度附近观察到。然而,当从齿轮体到轴承的位移不一样时,陀螺效应对横向和扭转振动响应的影响是显而易见的并且可以位于低临界速度附近和对应的高临界速度附近向前和向后旋转频率。 (3)陀螺效应对小齿轮的横向和扭转振动响应的影响比齿轮振动响应的横向和扭转振动响应更加明显。另外,相对于扭转振动,齿轮对的横向振动更容易受到陀螺效应的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号