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CONTACT LINE DYNAMICS OF WATER DROPLETS SPREADING ON NANO-STRUCTURED TEFLON SURFACES IN DROPWISE CONDENSATION

机译:逐馏凝结纳米结构特氟隆表面的水滴接触线动力学

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In dropwise condensation process, superhydrophobicity is usually achieved by introducing micro/nano-roughness to hydrophobic materials. The analysis of droplets growing and moving and the optimization of the surface structures entails a comprehensive knowledge of the contact line dissipation. However, it in many cases is neglected due to the insufficient understanding, particularly regarding its magnitude and characteristics. In this study, we report a study on the contact line dynamics of water droplets spreading on nano-structured Teflon surfaces. The Teflon surfaces are modeled on Gromacs 5.1.2 and based on the OPLSAA force field. The Teflon model is then validated by examining the glass transition temperature and thermal expansion coefficient. Patterned pillars are created by a confined layer method. The contact line dynamics of water on as-formed surfaces with different solid fraction is then analyzed using the molecular kinetic theory modified by incorporating both viscous damping and solid-liquid retarding. The unit displacement length of contact line is demonstrated to be a constant value of 0.605 nm on both flat and pillar-arrayed surfaces. The contact line friction coefficient is calculated to be on the same order of magnitude with the dynamic viscosity of water, and can be significantly decreased on superhydrophobic surfaces as a result of reduced liquid-solid contact, although contact line experiences stronger resistance on a single pillar.
机译:在逐滴冷凝过程中,通常通过将微/纳米粗糙度引入疏水材料来实现超疏水性。液滴生长和移动的分析以及表面结构的优化需要全面了解接触线路耗散。然而,由于理解不足,特别是关于其幅度和特征,它在许多情况下被忽略了。在这项研究中,我们举报了纳米结构化铁氟龙表面上蔓延的水滴接触线动力学的研究。 Teflon表面在Gromacs 5.1.2上进行建模,并基于OPLSAA力场。然后通过检查玻璃化转变温度和热膨胀系数来验证Teflon模型。图案化柱是由狭窄的层方法产生的。然后使用通过结合粘性阻尼和固液延迟来分析具有不同固体级分的用不同固体级分的水的接触线动力学。接触线的单位位移长度被证明是平坦和支柱阵列表面上的0.605nm的恒定值。接触线摩擦系数计算成与水的动态粘度相同的数量级,由于液体固体接触的结果,在超疏水表面上可以显着降低,尽管接触线在单个柱上经历更强的电阻。

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