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Characterization of oil-proof papers containing new-type of fluorochemicals Part 1: Surface properties and printability

机译:包含新型含氟化合物的防油纸的特性,第1部分:表面性质和适印性

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摘要

Commercial oil-proof papers containing new family of fluorochemicals were characterized in terms of surface and barrier properties and printability. XPS analyses demonstrated that the fluorochemicals added to these papers had shorter perfluoroalkyl chains, compared to those used few decades ago. Contact angle measurements were performed and the obtained data were processed according to Owens-Wendt-Rabel-Kaelble (OWRK) approach, in order to calculate the surface energy of the investigated samples. This set of experiments revealed that the values of the surface energy of the non-coated surfaces of oil-proof papers were low enough (i.e. about 5 mJ/m~2) to repel both water and oil. The surface energy of the coated sides was, instead, close to that of classical organic surfaces (i.e. around 30mJ/m~2), which predicts their potentially good printability. In fact, microcontour test was performed as the basic test for evaluating printability of oil-proof papers and showed that ink pigment retention was not significantly influenced by the level of barrier to oil. However, the surface roughness was found to play a key role in such properties.
机译:包含新型含氟化合物家族的商业防油纸的表面和阻隔性能以及可印刷性得到了表征。 XPS分析表明,与几十年前使用的含氟化合物相比,添加到这些论文中的含氟化合物具有较短的全氟烷基链。进行接触角测量并根据Owens-Wendt-Rabel-Kaelble(OWRK)方法处理获得的数据,以计算所研究样品的表面能。这组实验表明,防油纸的未涂布表面的表面能值足够低(即约5 mJ / m〜2),可以排斥水和油。相反,涂布面的表面能接近于经典的有机表面(即约30mJ / m〜2),这预示了它们潜在的良好印刷性。实际上,进行了微轮廓测试作为评估耐油纸可印刷性的基本测试,结果表明油墨颜料的保留率不受阻油性的影响很大。然而,发现表面粗糙度在这些性质中起关键作用。

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