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首页> 外文期刊>Journal of Colloid and Interface Science >Spreading Dynamics of Polydimethylsiloxane Drops: Crossover from Laplace to Van der Waals Spreading
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Spreading Dynamics of Polydimethylsiloxane Drops: Crossover from Laplace to Van der Waals Spreading

机译:聚二甲基硅氧烷液滴的扩散动力学:从拉普拉斯到范德华的扩散

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摘要

The spreading dynamics of small polydimethylsiloxane (PDMS) drops was studied on substrates with varying surface energies. For experimental parameters near the wetting transition, we observed small PDMS drops of different drop volumes as a function of time using interference video microscopy. While for large drops the con- tact angle 9 decreases with the well-established power-law relation 9 ~ t-OJ (Tanner's law), the effect of dispersive van der Waals (VW) interactions must be taken into account when interpreting the evolu- tion of small drops. Two signatures of the VW forces are observed. For a positive Hamaker constant, the disjoining pressure acts as an additional driving force, leading to an acceleration of droplet spreading as soon as the drop height becomes comparable to the range of the VW interactions. In addition, a precursor film forms ahead of the contact line, leading to an apparent volume loss, par- ticularly noticeable for very small drops. Contact line pinning may be a problem and we describe its effect on our experimental results. We present a theory that discusses the interplay of surface tension and VW forces in the case of a spreading drop. This model predicts a new spreading regime for very thin drops, in agreement with our experimental results.
机译:研究了小聚二甲基硅氧烷(PDMS)液滴在具有不同表面能的基材上的扩散动力学。对于接近润湿转变的实验参数,我们使用干涉视频显微镜观察到不同滴体积的小PDMS滴随时间的变化。尽管对于大液滴,接触角9随公认的幂律关系9〜t-OJ(坦纳定律)而减小,但在解释evolu时必须考虑分散范德华(VW)相互作用的影响-小滴药水。观察到大众部队的两个特征。对于正的Hamaker常数,分离压力充当附加驱动力,一旦液滴高度变得与VW相互作用范围相当,就会导致液滴扩散加速。此外,在接触线之前会形成前体薄膜,这会导致明显的体积损失,尤其是对于非常小的液滴而言。接触线固定可能是个问题,我们将描述其对实验结果的影响。我们提出了一种理论,该理论讨论了液滴扩散时表面张力和大众力的相互作用。该模型预测了非常细小液滴的新扩散方式,与我们的实验结果一致。

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