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Droplet Rolling and Spinning in V-Shaped Hydrophobic Surfaces for Environmental Dust Mitigation

机译:液滴轧制和纺丝在V形疏水表面中进行环境灰尘缓解

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摘要

The motion of a water droplet in a hydrophobic wedge fixture was examined to assess droplet rolling and spinning for improved dust mitigation from surfaces. A wedge fixture composed of two inclined hydrophobic plates had different wetting states on surfaces. Droplet rolling and spinning velocities were analyzed and findings were compared with the experiments. A wedge fixture was designed and realized using a 3D printing facility and a high speed recording system was adopted to evaluate droplet motion in the wedge fixture. Polycarbonate sheets were used as plates in the fixture, and solution crystallization and functionalized silica particles coating were adopted separately on plate surfaces, which provided different wetting states on each plate surface while generating different droplet pinning forces on each hydrophobic plate surface. This arrangement also gave rise to the spinning of rolling droplets in the wedge fixture. Experiments were extended to include dust mitigation from inclined hydrophobic surfaces while incorporating spinning- and rolling droplet and rolling droplet-only cases. The findings revealed the wedge fixture arrangement resulted in spinning and rolling droplets and spinning velocity became almost 25% of the droplet rolling velocity, which agrees well with both predictions and experiments. Rolling and spinning droplet gave rise to parallel edges droplet paths on dusty hydrophobic surfaces while striations in droplet paths were observed for rolling droplet-only cases. Spinning and rolling droplets mitigated a relatively larger area of dust on inclined hydrophobic surfaces as compared to their counterparts corresponding to rolling droplet-only cases.
机译:检查水滴在疏水性楔形件中的运动,以评估液滴轧制和纺丝,用于改善表面的灰尘缓解。由两个倾斜疏水板组成的楔形夹具在表面上具有不同的润湿状态。分析液滴轧制和纺纱速度并与实验进行比较。使用3D打印设施设计和实现楔形夹具,采用高速记录系统来评估楔形夹具中的液滴运动。将聚碳酸酯片用作夹具中的平板,在板表面上单独采用溶液结晶和官能化二氧化硅颗粒涂层,该板表面在每个板表面上提供不同的润湿状态,同时在每个疏水板表面上产生不同的液滴钉扎力。这种布置也产生了楔形夹具中的滚动液滴的旋转。延伸实验以包括从倾斜的疏水表面的灰尘缓解,同时包括旋转和轧制液滴和仅轧制液滴的情况。结果揭示了楔形夹具装置,导致纺丝和轧制液滴,旋转速度变为液滴滚动速度的近25%,这与两种预测和实验一致。滚动和旋转液滴产生了尘埃疏水表面上的平行边缘液滴路径,而液滴路径的条纹被观察到仅用于滚动液滴情况​​。与对应于滚动液滴情况​​相对应的对应物相比,纺纱和滚动液滴在倾斜的疏水表面上减轻了相对较大的灰尘区域。

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