首页> 外文期刊>Friction >Reduction of friction by normal oscillations. II. In-plane system dynamics
【24h】

Reduction of friction by normal oscillations. II. In-plane system dynamics

机译:通过正常振动减少摩擦。二。平面系统动力学

获取原文
           

摘要

Abstract The influence of out-of-plane oscillations on friction is a well-known phenomenon that has been studied extensively with various experimental methods, e.g., pin-on-disk tribometers. However, existing theoretical models have yet achieved only qualitative correspondence with experiment. Here we argue that this may be due to the system dynamics (mass and tangential stiffness) of the pin or other system components being neglected. This paper builds on the results of a previous study [19] by taking the stiffness and resulting dynamics of the system into account. The main governing parameters determining macroscopic friction, including a dimensionless oscillation amplitude, a dimensionless sliding velocity and the relation between three characteristic frequencies (that of externally excited oscillation and two natural oscillation frequencies associated with the contact stiffness and the system stiffness) are identified. In the limiting cases of a very soft system and a very stiff system, our results reproduce the results of previous studies. In between these two limiting cases there is also a resonant case, which is studied here for the first time. The resonant case is notable in that it lacks a critical sliding velocity, above which oscillations no longer reduce friction. Results obtained for the resonant case are qualitatively supported by experiments.
机译:摘要平面外振荡对摩擦的影响是一个众所周知的现象,已通过各种实验方法(例如针盘式摩擦计)进行了广泛研究。但是,现有的理论模型仅与实验取得了质的对应。在这里,我们认为这可能是由于忽略了销或其他系统组件的系统动力学(质量和切向刚度)所致。本文基于先前研究[19]的结果,将系统的刚度和所产生的动力学考虑在内。确定了决定宏观摩擦的主要控制参数,包括无因次振荡幅度,无因次滑动速度以及三个特征频率(外部激励振荡的频率和与接触刚度和系统刚度相关的两个自然振荡频率)之间的关系。在非常软的系统和非常僵硬的系统的极限情况下,我们的结果重现了先前研究的结果。在这两种极限情况之间,还有一个共振情况,这是首次在此进行研究。共振的情况是值得注意的,因为它没有临界的滑动速度,在该速度以上,振动不再减小摩擦。在共振情况下获得的结果得到实验的定性支持。

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