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Production and characterization of novel shaped fibers for fluid sorption and transport.

机译:用于流体吸附和运输的新型异形纤维的生产和表征。

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摘要

This work investigated the production and characterization of novel shaped fibers for fluid adsorption and transport. Shaped fibers such as Y, H, and octolobal, as well as conventional round fibers, were extruded using a research melt extruder. The fibers were extruded from 18 melt flow index (MFI) polypropylene (PP) and blends of 18 MFI PP and 400 MFI PP. Hydrophilic spin finish Bozzetto Favorol SF2 was applied to the surface of extruded fibers and hydrophilic polyester additive LB-100 was included in the blend of some H fibers to increase the hydrophilicity of the fiber surface. The geometric shape retention of the extruded fibers was evaluated using scanning electron microscopy. The fluid adsorption and transport properties of the fibers were investigated using a low surface tension liquid and a high surface tension liquid. The shaped fibers were shown to have improved geometric shape retention with the addition of 400 MFI PP and were shown to have twice the fluid adsorption and transport capacities of the round fibers.;Micrographs of the fiber cross-sections obtained with a scanning electron microscope were used to visually determine the geometric shape retention of the fiber with respect to the spinneret hole design. While round, Y and octolobal fibers had excellent geometric shape retention regardless of polymer blend, H fibers showed improving geometric shape retention with increasing amounts of 400 MFI PP in the fiber blend. The perimeter and area of the fiber cross-section were measured from the micrograph and were used to calculate the shape factor for each shaped fiber.;The oil adsorption properties of the 18 MFI PP shaped and round fibers was evaluated using ASTM F-726. During the oil adsorption short test, the shaped fibers adsorbed more than twice the oil that the round fibers adsorbed. The Y fibers were shown to be the most effective at oil adsorption and retention. The dynamic degradation test evaluated the ability of the fibers to adsorb oil in the presence of water. The shaped fibers again adsorbed twice the amount of oil that the round fibers adsorbed, with the Y and H fibers adsorbing the highest amounts of oil from the water. A comparison of the oil adsorption properties of Y and round fibers of increasing dpf showed that the Y fibers formed a cooperative structure that increased the oil adsorption beyond the adsorption of oil to the surface of the fibers.;Vertical wicking tests were used to investigate the wicking properties of the shaped and round fibers extruded with hydrophilic spin finish. When packed to have equal channel size, the shaped fibers wicked twice the amount of water the round fibers wicked. Second insult wicking tests on the H fibers showed that the improvement of geometric shape retention caused by adding 400 MFI PP to the fiber blend actually decreased the wicking properties of the fiber. The combination of the hydrophilic polyester additive LB-100 and the 400 MFI PP in the polymer blend, however, increased the wicking properties of the fiber as increasing amounts of 400 MFI PP were included.
机译:这项工作研究了用于流体吸附和运输的新型异形纤维的生产和表征。使用研究型熔融挤出机挤出成形纤维(例如Y,H和八齿形纤维)以及常规的圆形纤维。纤维是从18熔体流动指数(MFI)聚丙烯(PP)和18 MFI PP和400 MFI PP的混合物中挤出的。将亲水性纺丝油剂Bozzetto Favorol SF2应用于挤出纤维的表面,并将亲水性聚酯添加剂LB-100包含在一些H纤维的混合物中,以增加纤维表面的亲水性。使用扫描电子显微镜评价挤出纤维的几何形状保持性。使用低表面张力液体和高表面张力液体研究了纤维的流体吸附和传输特性。加入400 MFI PP后,异形纤维的几何形状保持性得到改善,并显示出圆形纤维的流体吸收和传输能力是其两倍。扫描电子显微镜获得的纤维横截面显微照片为用于从视觉上确定纤维相对于喷丝孔设计的几何形状保持率。圆形,Y和八角形纤维具有出色的几何形状保持性,而与聚合物共混物无关,而H纤维显示出改善的几何形状保持性,随着纤维共混物中400 MFI PP含量的增加。从显微照片测量纤维横截面的周长和面积,并用于计算每种异形纤维的形状因子。使用ASTM F-726评价18 MFI PP异形和圆形纤维的吸油性能。在短时间吸油测试中,异形纤维吸收的油是圆纤维吸收的两倍以上。已显示出Y纤维在油的吸附和保留方面最有效。动态降解测试评估了纤维在水存在下吸附油的能力。异形纤维再次吸收了圆形纤维吸收的两倍量的油,Y和H纤维从水中吸收了最高量的油。对Y和dpf增大的圆形纤维的吸油性能进行比较,结果表明Y纤维形成了一种协同结构,增加了油的吸附,而不再是油对纤维表面的吸附。亲水纺丝挤出的异形和圆形纤维的芯吸性能。当包装成具有相等的通道尺寸时,异形纤维芯吸的水量是圆形纤维芯吸的水量的两倍。对H纤维的第二次绝缘芯吸试验表明,向纤维共混物中添加400 MFI PP导致的几何形状保持性的改善实际上降低了纤维的芯吸性能。然而,在聚合物共混物中,亲水性聚酯添加剂LB-100和400 MFI PP的组合增加了纤维的芯吸性能,因为其中包括增加的400 MFI PP含量。

著录项

  • 作者

    Fuller, Lisa Graham.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Plastics Technology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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