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Migration Effects of Fluorochemical Melt Additives for Alcohol Repellency in Polypropylene Nonwoven Materials

机译:聚丙烯非织造材料中含氟化学熔体添加剂的含氟化学熔体添加剂的迁移效应

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The use of bulk polymer melt additives provides a facile, industrially relevant approach to tailor properties of polymer surfaces for many different applications. These melt additives, when blended with polymers prior to melt spinning, migrate to the fiber surface and influence surface functionality. While the use of bulk polymer melt additives to impart hydrophilicity or oleophobicity is well studied, the impact of the fiber formation process on additive migration and resultant repellency of nonwoven media products remains largely unexplored. In this study, we produce fluorochemical melt additive containing meltblown nonwovens, and establish methods for characterization of fiber mat surface composition and repellency. Repellency of low surface tension fluids is a significant challenge and is of particular importance in the creation of medical garments such as surgical gowns and masks which must perform as liquid barriers even when exposed to alcohol based solutions. Similarly, melt additives are also used in the production of electret air filtration devices. Electret filters are imbued with charges to enhance particle capture performance, but this charge can be negated through wetting by low surface tension fluids. To address this challenge, the changing composition of fiber surfaces due to the migration of additives is monitored via X-ray Photoelectron Spectroscopy, then related to repellency of alcohol solutions by contact angle analysis. We demonstrate that for the samples tested a fluorine to carbon (F/C) ratio of 0.35 is sufficient to prevent wicking of isopropanol droplets, and higher surface tension fluids could be repelled by fiber mats with lower fluorine content. Through the use of cross-sectional ToF-SIMS analysis, we find that migration of additives is key to the performance of samples with low additive loadings, and that these phenomena are heavily influenced by many nonwoven manufacturing parameters including fiber size, die-to-collector distance, and polymer resin melt flow rates.
机译:散装聚合物熔体添加剂的使用提供了适用于许多不同应用的聚合物表面的裁缝性能的容纳,工业上相关的方法。这些熔体添加剂,当在熔化纺丝之前与聚合物混合时,迁移到纤维表面并影响表面官能度。虽然使用散装聚合物熔体添加剂来赋予亲水性或疏水性,但纤维形成过程对非织造介质产品的添加剂迁移和结冰性的影响仍然很大程度上是未探斗的。在本研究中,我们生产含有熔喷非织造的含氟化合物熔融添加剂,并建立用于表征纤维垫表面组成和排斥性的方法。低表面张力流体的避难所是一个重大挑战,并且在诸如外科礼服和掩模的医疗服装中的产生是特别重要的,即使在暴露于酒精的溶液时也必须作为液体屏障的液体屏障。类似地,熔融添加剂也用于驻极体空气过滤装置的生产。驻极体滤光器充满电荷以增强粒子捕获性能,但通过低表面张力流体润湿,可以否定该电荷。为了解决这一挑战,通过X射线光电子光谱监测添加剂迁移导致的纤维表面的变化组成,然后通过接触角分析与醇溶液的排斥性有关。我们证明,对于测试的样品,氟与碳(F / C)的比例为0.35,足以防止异丙醇液滴的芯吸,并且可以通过具有较低氟含量的纤维垫排斥较高的表面张力流体。通过使用横截面TOF-SIMS分析,发现添加剂的迁移是具有低附加载荷的样品的性能的关键,并且这些现象受到许多非织造制造参数的严重影响,包括纤维尺寸,模具收集器距离和聚合物树脂熔体流速。

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