Publication | Closed Access
Drag Reduction using Lubricant-Impregnated Surfaces in Viscous Laminar Flow
299
Citations
55
References
2014
Year
Materials ScienceEngineeringFluid PropertiesDrag ReductionHydrodynamic LubricationFluid MechanicsMechanical EngineeringScaling ModelFlow PhysicPolymer ProcessingLubricant ViscosityAerodynamicsRheologyInterfacial PhenomenaPiston-ring LubricationSoft MatterTribological PropertyNanotribology
Lubricant-impregnated surfaces (LIS), where micro/nanotextured surfaces are impregnated with lubricating liquids, have received significant attention for their robust, superslippery properties. In this study, we systematically demonstrate the potential for LIS to reduce drag in laminar flows. We present a scaling model that incorporates the viscosity of the lubricant and elucidates the dependence of drag reduction on the ratio of the viscosity of the working fluid to that of the lubricant. We experimentally validate this dependence in a cone and plate rheometer and demonstrate a drag reduction of 16% and slip length of 18 μm in the case where the ratio of working fluid viscosity to lubricant viscosity is 260.
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