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The effect of branching on slip and rheological properties of lubricants in molecular dynamics simulation of Couette shear flow

机译:在库埃特剪切流的分子动力学模拟中,支化对润滑剂的滑移和流变性的影响

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Molecularly thin liquid films of alkane in extreme conditions in a thin film lubrication regime have been investigated. To get an insight into the effects of molecular architecture in the behaviour of these thin lubricant films we have studied six different molecules, mainly isomers of C{sub}30. In this work the effect of branching on rheological properties and behaviour of lubricant film is examined. Our study shows viscosity and normal stress effects depend on the degree of branching. Dynamics of the molecules and their orientation are also affected by the degree of branching. A weaker layering near the wall is observed for branched molecules. Slip between the wall and lubricant film also was larger for branched molecules. Branched molecules had less tendency to change their orientation under the flow. The results obtained here could be helpful in designing new lubricants at the molecular level.
机译:已经研究了在极端条件下以薄膜润滑方式的烷烃分子液体薄膜。为了深入了解分子结构对这些薄润滑膜性能的影响,我们研究了六个不同的分子,主要是C {sub} 30的异构体。在这项工作中,研究了支化对润滑膜流变性能和性能的影响。我们的研究表明,粘度和法向应力效应取决于支化程度。分子的动力学及其取向也受分支程度的影响。在壁附近观察到较弱的分支分子层。对于支链分子,壁和润滑膜之间的滑动也较大。支链分子在流动下几乎没有改变其取向的趋势。此处获得的结果可能有助于设计分子水平的新型润滑剂。

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