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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Effect of high-pressure rheology of lubricants upon entrapped oil film behaviour at halting elastohydrodynamic lubrication
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Effect of high-pressure rheology of lubricants upon entrapped oil film behaviour at halting elastohydrodynamic lubrication

机译:润滑剂高压流变性对弹性流体动力润滑停止时油膜截留行为的影响

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摘要

The steady-state elastohydrodynamic lubrication (EHL) is now quite well understood both computationally and experimentally. However, many practical machine elements such as rolling element bearings and traction continuously variable transmission (CVT) operate often under the halting of machine, the suspension of long time and start of machine. It is often in such operating condition that breakdown of lubrication films occurs, which eventually gives rise to fail of the lubricated surfaces. This paper describes an experimental study of EHL film thickness at halting of operation and a change by the time of an entrapped film thickness. The film thickness is investigated with some different type of lubricating oil, which a phase diagram is known by high-pressure density measurements. The results demonstrate an entrapped oil film thickness at EHL halting is dependant on αηa, where a is the pressure-viscosity coefficient, 17 is the dynamic viscosity, a is the deceleration, and squeeze out time of entrapped oil film is dependant on a phase diagram parameter T{sub}(VE) - T, where T{sub}(VE) is the viscoelastic solid transition temperature at Hertzian pressure, and T is the oil temperature.
机译:稳态弹性流体动力润滑(EHL)现在在计算和实验上都得到了很好的理解。但是,许多实用的机器元件,例如滚动轴承和牵引无级变速器(CVT),通常在机器停机,长时间停止和机器启动的情况下运行。经常在这种工作条件下发生润滑膜的破裂,这最终导致润滑表面的失效。本文描述了在停止操作时EHL膜厚度的实验研究,以及随截获膜厚度的变化而发生的变化。用某些不同类型的润滑油研究了膜厚,通过高压密度测量可知其相图。结果表明,EHL停止时截留的油膜厚度取决于αηa,其中a是压力-粘度系数,17是动态粘度,a是减速度,截留油膜的挤出时间取决于相图参数T {sub}(VE)-T,其中T {sub}(VE)是赫兹压力下的粘弹性固体转变温度,T是油温。

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