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首页> 外文期刊>Journal of Tribology >Effects of structural vibrations on the film thickness in an EHL circular contact
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Effects of structural vibrations on the film thickness in an EHL circular contact

机译:结构振动对EHL圆形触点中薄膜厚度的影响

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摘要

In elastohydrodynamic lubrication (EHL), one generally imposes force balance, i.e., the contact force resulting from the pressure in the contact is equal to the applied load When studying the effect of structural vibrations, this force balanceequation obviously does not hold and the more general equation of motion is required. In Wijnant and Venner (1996), an EHL contact model was introduced that incorporates both squeeze and entraining motion as well as the equation of motion. It was shownnumerically that due to a small initial deviation or initial velocity, the rolling element starts an oscillatory motion around the equilibrium position. This motion is slightly damped because of the viscous losses in the lubricant. Moreover, it was shownthat these oscillations cause film thickness modulations with a wavelength, directly related to the dimension less frequencyΩ. This paper compares results from experiments that were carried out on a ball and disk apparatus with results obtained with theEHL contact model. In this experiment, the applied load was rapidly increased by impacting a wedge between the base and the ball holder. This results in an increase of the contact area and, as a result of inertia forces of the ball, disk and supports, and oscillatory motion of the contacting bodies. Modulations in the film thickness which result from these oscillations, are clearly visible. The contact model was tailored to this experiment and a qualitatively close agreement has been found.
机译:在弹性流体动力润滑(EHL)中,通常会施加力平衡,即,由接触中的压力产生的接触力等于施加的载荷。在研究结构振动的影响时,这种力平衡方程显然不成立,并且更一般需要运动方程。在Wijnant和Venner(1996)中,引入了EHL接触模型,该模型既包含挤压运动,也包含牵引运动以及运动方程。从数字上可以看出,由于较小的初始偏差或初始速度,滚动元件开始围绕平衡位置进行振荡运动。由于润滑剂中的粘性损失,该运动被略微抑制。而且,已经表明,这些振荡引起具有与尺寸较小的频率Ω直接相关的波长的膜厚度调制。本文将在球和磁盘设备上进行的实验结果与通过EHL接触模型获得的结果进行了比较。在该实验中,通过冲击底座和球保持器之间的楔形物,使施加的载荷迅速增加。这导致接触面积的增加,以及由于球,盘和支撑的惯性力以及接触体的振荡运动的结果。由这些振荡引起的膜厚度的调节是清晰可见的。接触模型是为该实验量身定制的,并且已经找到了质量上接近的协议。

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