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Many-body dissipative particle dynamics simulation of the anisotropic effect of droplet wetting on stripe-patterned heterogeneous surfaces

机译:条纹图案异质表面上液滴润湿各向异性效应的多体耗散粒子动力学模拟

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摘要

The droplet anisotropic wetting on chemically heterogeneous stripe-patterned substrates after impact is studied by using many-body dissipative particle dynamics in this work. After a low-velocity impact on substrates with different length ratio (ratio of stripe width to the initial droplet size) and Cassie area fraction, the droplet can show various shapes and contact angles in parallel and orthogonal directions to the stripes. The elongation of the droplet can be increasingly evident when increasing the length ratio. Also, the contact angles at both directions follow the Cassie-Baxter predicted values well at low length ratio while deviate from them at high length ratio. Both the capillary and kinetic effects have a significant influence on the anisotropic wetting. When impact with higher velocity, the droplet leaves some residues on the hydrophilic stripes of the substrates. Surprisingly, the residues for substrates with certain length ratio (<= 0.316) are distributed in circular regions with almost identical radii, indicating the spreading stages of them are independent on the surface properties and dominated by the kinetic effect. When the droplet reaches a stable state, the main body shows anisotropic wetting behavior, indicating the capillary effect dominates the wetting instead of the kinetic effect at the retraction stage.
机译:在这项工作中,通过使用多体耗散粒子动力学研究了撞击后化学异质条状图案基材上的液滴各向异性润湿。在以不同的长度比(条带宽度与初始液滴大小的比率)和Cassie面积分数对基板进行低速冲击之后,液滴在与条带平行和正交的方向上可以显示各种形状和接触角。当增加长度比时,液滴的伸长会越来越明显。同样,两个方向上的接触角在低长度比率时都很好地遵循了Cassie-Baxter预测值,而在高长度比率时则偏离了它们。毛细管效应和动力学效应都对各向异性润湿有重要影响。当以较高的速度撞击时,液滴会在基材的亲水条纹上留下一些残留物。出乎意料的是,具有一定长度比(<= 0.316)的基材残留物分布在半径几乎相同的圆形区域中,这表明它们的铺展阶段与表面性质无关,并受动力学作用的支配。当液滴达到稳定状态时,主体表现出各向异性的润湿行为,这表明在回缩阶段,毛细管效应主导着润湿,而不是动力学效应。

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