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Mobility of A Water Droplet on Liquid Phase of N-Octadecane Coated Hydrophobic Surface

机译:N-十八碳烷涂层疏水表面在液相上的水滴流动性

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摘要

A water droplet behavior on the liquid n-octadecane film is investigated. The coating of hydrophobic surface by N-octadecane film provides exchange of wetting state on the surface. The polycarbonate surface is crystallized and the functionalized silica particles are placed on the resulting surface prior to thin film coating of n-octadecane. A high-speed camera is used to monitor dynamic characteristics of the droplet on the inclined film. The findings reveal that deposition of thin n-octadecane film on hydrophobic surface results in reversibly exchange of the wetting state at the surface, which remains hydrophobic when n-octadecane film is in solid phase while it becomes hydrophilic when n-octadecane film liquefies. Droplet transition velocity predicted agrees well with the experimental data. Sliding mode of the water droplet governs droplet transition on the liquid surface. Droplet pinning force, due to interfacial tension, dominates over the other retention forces including drag and shear.
机译:研究了在液体正十八烷膜上的水滴行为。 N-十八烷膜对疏水性表面的涂层提供了表面上润湿状态的交换。在对正十八烷进行薄膜涂覆之前,将聚碳酸酯表面结晶,并将官能化的二氧化硅颗粒放置在所得表面上。高速照相机用于监视倾斜膜上的液滴的动态特性。研究结果表明,在疏水表面上沉积正十八烷薄膜会导致表面润湿状态的可逆交换,当正十八烷膜处于固相状态时,润湿状态保持疏水性,而当正十八烷膜液化时它将变为亲水性。预测的液滴过渡速度与实验数据吻合良好。水滴的滑动模式控制着液滴在液体表面上的过渡。由于界面张力,液滴的钉扎力占主导地位,超过了其他保持力,包括阻力和剪切力。

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