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首页> 外文期刊>Fibers and Polymers >Improvement of liquid absorption properties of nonwoven polypropylene substrates by low pressure plasma treatment with CH4-O2 mixture gas
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Improvement of liquid absorption properties of nonwoven polypropylene substrates by low pressure plasma treatment with CH4-O2 mixture gas

机译:CH4 -O2 混合气体低压等离子体处理改善聚丙烯非织造布基体的吸液性能

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The use of nonwoven textile substrates for filtration and absorption purposes is generalized due to the high surface area they can provide. Many of these applications require good wetting properties to increase efficiency. In this work, low pressure plasma treatment with a CH4-O2 mixture gas has been used to increase surface wettability and subsequent absorption properties on nonwoven polypropylene substrates. CH4 plasma treatment leads to a plasma polymerization process which results in hydrophobic surface finishing, but in combination with O2, it is possible to form a functionalized plasmapolymerized layer thus improving wetting properties. Changes in wetting properties have been studied by contact angle measurements showing that optimum wetting properties are obtained with exposure times to plasma treatment of about 10 min, and no significant changes are obtained for longer exposure times. Absorption efficiency has been followed by determining three different parameters by the guidelines of the UNE-EN-ISO 9073-6 standard: wetting time, liquid absorption capacity (LAC) and liquid propagation rate or absorption speed. All these properties are remarkably improved as the exposure time to CH4-O2 plasma increases; this improvement is remarkably high for relatively short exposure times (5–10 min) and no significant changes are obtained for long exposure times so that, it is possible to conclude that previous plasma treatment with exposure times in the 5–10 min range is an efficient method to improve overall absorption properties of nonwoven polypropylene substrates.
机译:由于非织造织物基材可提供高表面积,因此将其普遍用于过滤和吸收目的。这些应用中的许多都需要良好的润湿性能以提高效率。在这项工作中,已使用CH4 -O2 混合气体进行低压等离子体处理,以提高非织造聚丙烯基材的表面润湿性和随后的吸收性能。 CH4 等离子体处理导致等离子体聚合过程,该过程导致疏水性表面光洁度,但与O2结合可以形成官能化的等离子体聚合层,从而改善润湿性能。通过接触角测量研究了润湿性能的变化,表明在约10分钟的等离子体处理时间下可获得最佳的润湿性能,而对于更长的接触时间则无明显变化。根据UNE-EN-ISO 9073-6标准的指南,通过确定三个不同的参数来跟踪吸收效率:润湿时间,液体吸收容量(LAC)和液体传播速率或吸收速度。随着对CH4 -O2 等离子体的暴露时间的增加,所有这些性质都得到了显着改善。相对较短的曝光时间(5-10分钟),这种改善非常明显,而较长的曝光时间则没有明显变化,因此,可以得出结论,先前的等离子处理的曝光时间在5-10分钟范围内改善非织造聚丙烯基材整体吸收性能的有效方法。

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