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Hollow segmented-pie PLA/PBS and PLA/PP bicomponent fibers: an investigation on fiber properties and splittability

机译:中空分段式PLA / PBS和PLA / PP双组分纤维:纤维性能和可分性的研究

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摘要

Melt spinning of 50/50 hollow segmented-pie bicomponent fibers, each containing a pair of either poly(lactic acid) (PLA) and poly(butylene succinate) (PBS) or PLA and polypropylene (PP), was conducted to investigate effects of constituent polymers on arrangement and properties of the obtained fibers. PLA/PBS fibers exhibited flat interfaces between PLA and PBS segments, while PLA/PP fibers exhibited curved interfaces having concave-shaped PLA segments and convex-shaped PP segments. The curvature at interfaces was due to the molten low-viscosity PLA encapsulating the high-viscosity PP. The results showed that fiber splitting was complex, and its mechanism depended not only on the properties of each polymer constituent but also interactions between them. PLA/PP fibers exhibited the tendency of fiber splitting due to the incompatibility between PLA and PP as well as an imbalance force at the interface. In PLA/PBS fibers, the fiber splitting was not observed. The balance force of flat interface between PLA and PBS could contribute to the reduction of interfacial tension. In addition, small domain size in a range of 3-5 A mu m could favor compatibility between the PLA and PBS segments. Observations from this study suggested a possibility of employing segmented-pie configuration as an alternative approach for developing PLA/PBS fibers of high PBS content without phase separation.
机译:进行了50/50中空分段双组分纤维的熔融纺丝,每条纤维都包含一对聚乳酸(PLA)和聚丁二酸丁二酯(PBS)或PLA和聚丙烯(PP),以研究组成聚合物对所得纤维的排列和性能的影响。 PLA / PBS纤维在PLA和PBS片段之间显示平坦的界面,而PLA / PP纤维显示具有凹形PLA片段和凸形PP片段的弯曲界面。界面处的曲率归因于熔融的低粘度PLA包裹了高粘度PP。结果表明,纤维分裂很复杂,其机理不仅取决于每种聚合物成分的性质,还取决于它们之间的相互作用。由于PLA和PP不相容以及界面处的不平衡力,PLA / PP纤维表现出纤维分裂的趋势。在PLA / PBS纤维中,未观察到纤维分裂。 PLA和PBS之间平坦界面的平衡力可能有助于降低界面张力。另外,在3-5μm范围内的小畴尺寸可能有利于PLA和PBS片段之间的相容性。这项研究的观察结果表明,采用分段扇形构型作为开发高PBS含量而不发生相分离的PLA / PBS纤维的替代方法的可能性。

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