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Effects of lubricant rheology and impact speed on EHL film thickness at pure squeeze action

机译:纯挤压作用下润滑剂流变性和冲击速度对EHL膜厚度的影响

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摘要

A squeeze film action is an essential phenomenon in elastohydrodynamically lubricated conjunctions subjected to impact loading or sudden halting of motion and affects both film thickness and friction. This study presents experimental results of film thickness behaviour of lubricant entrapment under diverse conditions including initial impact gaps, initial approaching speeds, loading speeds and variety of lubricants during introductory part of impact loading. The results are compared with recent theoretical solution. It is shown that the entrapped film shape directly depends on loading speed and the central film thickness is mainly determined by the approaching speed and lubricant viscosity and can be approximated by power law where the influence of impact times/speeds can be estimated from basic rheological properties of lubricants.
机译:在受到冲击载荷或突然停止运动的弹性流体动力润滑接头中,挤压膜作用是必不可少的现象,会影响膜的厚度和摩擦力。这项研究提出了在各种条件下润滑剂截留的膜厚度行为的实验结果,包括初始冲击间隙,初始接近速度,加载速度以及在冲击载荷引入部分过程中的各种润滑剂。将结果与最新的理论解决方案进行比较。结果表明,截留的膜的形状直接取决于加载速度,中心膜的厚度主要由接近的速度和润滑剂的粘度决定,并且可以通过幂律近似,其中可以从基本流变性质估算冲击时间/速度的影响。润滑剂。

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