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首页> 外文期刊>Journal of Colloid and Interface Science >The wettability of PTFE and glass surfaces by nanofluids
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The wettability of PTFE and glass surfaces by nanofluids

机译:纳米流体对PTFE和玻璃表面的润湿性

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Wetting of solid surfaces by surfactant solutions is well focused in the literature compared that of nanofluids. Similar to the surfactant solutions nanofluids are also able to reduce the surface tension as well as influence on contact angle at the solid, liquid and gas interface. The surface tension and wettability of two different nanofluids containing hydrophilic (TiO2) and hydrophobic (S) particles have been experimentally studied here. The surface tension reduction of nanofluids strongly depends on material property, particle size and as well as concentration. These parameters also influence the change in contact angle on both hydrophilic (glass) and hydrophobic (PTFE) surfaces. Three important factors such as surface tension, surface hydrophobicity after deposition of particles on a solid surface, and the disjoining pressure influence the final contact angle of nanofluids on a solid surface. Sulfur nanofluids show maximum enhancement in contact angle (30.6 degrees) on the glass surface; on the other hand TiO2 nanofluids show maximum reductions in surface tension (25.4 mN/m) and contact angle on the PTFE surface (17.7 degrees) with respect to pure water. (C) 2014 Elsevier Inc. All rights reserved.
机译:与纳米流体相比,表面活性剂溶液对固体表面的润湿在文献中已得到很好的关注。类似于表面活性剂溶液,纳米流体还能够降低表面张力以及对固体,液体和气体界面处的接触角的影响。此处已通过实验研究了两种不同的包含亲水性(TiO2)和疏水性(S)颗粒的纳米流体的表面张力和润湿性。纳米流体的表面张力降低在很大程度上取决于材料的性质,粒径和浓度。这些参数还会影响亲水(玻璃)和疏水(PTFE)表面上的接触角变化。三个重要因素,例如表面张力,颗粒在固体表面上沉积后的表面疏水性和分离压力影响纳米流体在固体表面上的最终接触角。硫纳米流体在玻璃表面上显示出最大的接触角增强(30.6度)。另一方面,TiO2纳米流体相对于纯水在PTFE表面的表面张力(25.4 mN / m)和接触角(17.7度)上显示最大降低。 (C)2014 Elsevier Inc.保留所有权利。

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