首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >EXPERIMENTAL INVESTIGATION ON SILVER-GRAPHENE HYBRID NANOFLUID DROPLET EVAPORATION AND WETTING CHARACTERISTICS OF ITS NANOSTRUCTURED DROPLET RESIDUE
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EXPERIMENTAL INVESTIGATION ON SILVER-GRAPHENE HYBRID NANOFLUID DROPLET EVAPORATION AND WETTING CHARACTERISTICS OF ITS NANOSTRUCTURED DROPLET RESIDUE

机译:银石墨烯混合纳米液滴蒸发的实验研究及其纳米结构液滴的润湿特性

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Droplet evaporation is a complex phase change process with a wide range of cooling applications, such as spray cooling and dropwise hotspot cooling in microelectronics, to name a few. The hybrid nanofluid droplet evaporation and its residue effects on evaporation of the subsequent hybrid nanofluid droplet is investigated in this research. Silver-graphene (Ag-GNP) hybrid nanofluid exhibiting synergistic thermal properties is investigated and prepared by dispersing silver nanoparticles along with graphene nanoplatelets in water at 0.1% volume fraction and with different mixing ratios, followed by ultra-sonication. The evaporation rate and wetting characteristics of a 3 μl volume of Ag-GNP hybrid nanofluid droplet on a copper surface were studied using an optical tensiometer. Once dried, the nanoporous structure of the residue surface was examined using a scanning electron microscope, while the surface roughness was measured using an optical profiler. Experiments were continued to further investigate the evaporation rate and wetting effects of the subsequent Ag-GNP hybrid nanofluid droplet over the residue surface. The results showed improved wetting characteristics, with 88% reduction in initial static contact angle and 163-196% enhancement in evaporation rate of the subsequent Ag-GNP hybrid nanofluid droplets over the residue surfaces as compared to the copper surface.
机译:液滴蒸发是一个复杂的相变过程,具有多种冷却应用,例如微电子学中的喷雾冷却和逐点热点冷却等。本研究研究了杂化纳米流体液滴的蒸发及其残留对后续杂化纳米流体液滴蒸发的影响。研究和制备具有协同热性能的银-石墨烯(Ag-GNP)杂化纳米流体,方法是将银纳米颗粒与石墨烯纳米片一起以0.1%的体积分数和不同的混合比分散在水中,然后进行超声处理。使用光学张力计研究了3μl体积的Ag-GNP杂化纳米流体液滴在铜表面上的蒸发速率和润湿特性。干燥后,使用扫描电子显微镜检查残留物表面的纳米孔结构,同时使用光学轮廓仪测量表面粗糙度。继续进行实验以进一步研究残留表面上随后的Ag-GNP杂合纳米流体液滴的蒸发速率和润湿效果。结果显示出改善的润湿特性,与铜表面相比,残留表面上的后续Ag-GNP杂化纳米流体小滴的初始静态接触角降低了88%,蒸发速率提高了163-196%。

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