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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Determining the dispersive and polar contributions to the surface tension of water-based printing ink as a function of surfactant surface excess
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Determining the dispersive and polar contributions to the surface tension of water-based printing ink as a function of surfactant surface excess

机译:确定水基印刷油墨对表面张力的分散和极性影响与表面活性剂表面过量的关系

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摘要

The surface tension of a model, water-based, flexographic printing ink was measured at a range of surfactant concentrations along with the equilibrium contact angle formed with polymer substrates. The surface excess of surfactant at each concentration was calculated using the Gibbs adsorption isotherm and assumed equal to the concentration of surfactant at the interface. The change in the surface tension of the ink formulation was assumed to be determined entirely by the surface concentration of surfactant. This allowed the estimation of the surface tension at the solid-liquid and solid-vapour boundaries when in contact with substrate based on the values obtained for pendant drops. The associated polar and dispersive contributions to the surface tension were then calculated using the Young-Dupre equation. The values of the polar and dispersive surface tension components extracted in this manner were compared with those calculated using the approach of van Oss, Chaudhury and Good. The use of surface excess in estimating the contributions to surface tension was found to give far better agreement with experimental data than the van Oss approach which is intended for use with pure liquids.
机译:在一定范围的表面活性剂浓度以及与聚合物基材形成的平衡接触角的范围内,测量了模型水基苯胺印刷油墨的表面张力。使用吉布斯吸附等温线计算每种浓度下表面活性剂的表面过量,并假定等于界面上表面活性剂的浓度。假定油墨制剂的表面张力的变化完全由表面活性剂的表面浓度决定。这允许基于获得的悬垂液滴的值估计当与基材接触时在固-液和固-气边界处的表面张力。然后使用Young-Dupre方程计算对表面张力的相关极性和色散贡献。将以此方式提取的极性和分散表面张力分量的值与使用van Oss,Chaudhury和Good的方法计算得出的值进行比较。与使用纯液体的van Oss方法相比,发现使用表面过剩来估计表面张力的影响与实验数据具有更好的一致性。

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