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Slipping domains in water-lubricated microsystems for improved load support

机译:水润滑微系统中的滑动域,用于改进负载支撑

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摘要

This work discusses the use of slipping domains to improve load support in water-lubricated microsystems through a multi-scale approach. A semi-analytical continuum formulation is developed to calculate changes in pressure distribution for a line contact with added slip. It is found that the slipping region maximizing hydrodynamic lift should favor inlet flow, but not be located at the contact outlet. Estimations for its positioning are provided. Slip on flat surfaces gives the largest gains in load support and friction reduction, but moderate improvements are also possible on circular geometries featuring high convergence ratios. Finally, Molecular Dynamics simulations are employed to quantify slip on hydrophobic surfaces. Among the considered topologies, graphene is an excellent candidate to generate slip in water-lubricated microsystems.
机译:这项工作讨论了使用滑动域通过多尺度方法改善水润滑微系统中的负载支持。 开发了一种半分析连续体制剂,以计算与添加的滑动线接触的压力分布的变化。 结果发现,滑动区域最大化流体动力升力应该有利于入口流,但不在接触出口处。 提供其定位的估计。 在平坦表面上滑动给出负载支撑和摩擦减少的最大增益,但在具有高收敛比的圆形几何形状上也可以进行中等改进。 最后,采用分子动力学模拟来量化疏水表面上的滑动。 在考虑的拓扑中,石墨烯是在水润滑微系统中产生滑动的优异候选者。

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