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Evaporative characteristics of sessile nanofluid droplet on micro‐structured heated surface

机译:微结构加热表面上的术术纳米流体液滴的蒸发特性

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Abstract Micro‐structure patterned substrates attract our attention due to the special and programmable wettabilities. The interaction between the liquid and micro/nano structures gives rise to controllable spreading and thus evaporation. For exploration of the application versatility, the introduction of nanoparticles in liquid droplet results in interaction among particles, liquid and microstructures. In addition, temperature of the substrates strongly affects the spreading of the contact line and the evaporative property. The evaporation of sessile droplets of nanofluids on a micro‐grooved solid surface is investigated in terms of liquid and surface properties. The patterned nickel surface used in the experiments is designed and fabricated with circular and rectangular shaped pillars whose size ratios between interval and pillars is fixed at 5. The behavior is firstly compared between nanofluid and pure liquid on substrates at room temperature. For pure water droplet, the drying time is relatively longer due to the receding of contact line which slows down the liquid evaporation. Higher concentrations of nanoparticles tend to increase the total evaporation time. With varying concentrations of graphite at nano scale from 0.02% to 0.18% with an interval at 0.04% in water droplets and the heating temperature from 22 to 85°C, the wetting and evaporation of the sessile droplets are systematically studied with discussion on the impact parameters and the resulted liquid dynamics as well as the stain. The interaction among the phases together with the heating strongly affects the internal circulation inside the droplet, the evaporative rate and the pattern of particles deposition.
机译:摘要微结构图案基板由于特殊和可编程的Wottability引起了我们的注意。液体和微/纳米结构之间的相互作用产生可控扩散,从而蒸发。为了探索应用通用性,液滴中的纳米颗粒的引入导致颗粒,液体和微观结构之间的相互作用。另外,基材的温度强烈影响接触线和蒸发性的展开。在液体和表面性质方面研究了微槽固体表面上的纳米流体上的纳米流体的术液滴的蒸发。实验中使用的图案化镍表面采用圆形和矩形柱设计和制造,其圆形和柱之间的尺寸比固定为5.在室温下将该行为与纳米流体和纯液体相比。对于纯水液滴,由于对液体蒸发的速度降低的接触线,干燥时间相对较长。较高浓度的纳米颗粒倾向于增加总蒸发时间。随着纳米尺度的改变浓度为0.02%至0.18%,间隔在水滴中的0.04%,加热温度为22至85℃,系统地研究了对柄液滴的润湿和蒸发,并讨论了影响参数和所产生的液体动力学以及污渍。阶段之间的相互作用与加热一起强烈影响液滴内的内部循环,蒸发速率和颗粒沉积的图案。

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