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The preparation of polypropylene microfiber yarns via vortex airflow-assisted melt differential electrospinning

机译:涡流气流辅助熔融差动静电纺丝制备聚丙烯超细纤维纱线

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摘要

Polypropylene (PP) yarn possesses the advantages of low density and exceptional mechanical properties. Through electrospinning, fibers of PP yarns can be refined from 10 to 20 mu m to an ultrafine level, thereby acquiring an enlarged specific surface area and more functional sites, expanding its application in high-value areas. Herein, vortex airflow-assisted polymer melt differential electrospinning was proposed to fabricate PP microfiber yarns. Under the influence of an electrostatic field, molten PP automatically splits into multiple jets that are further stretched and cooled into ultrafine fibers by suction airflow induced by vortex airflow. Subsequently, multiple ultrafine fibers were twisted into PP yarns using the vortex airflow. The effects of voltage, melt feed speed, and air pressure on the PP electrospun yams formation process as well as the morphology and mechanical properties of both the yarn and fibers were investigated. The results showed that the diameter of PP fibers ranged from 3 to 5 mu m. The PP microfiber yams exhibited a relatively high mechanical strength of 1.6 cN/tex under conditions of 56 kV voltage, 0.22 g/min feed rate, and 0.3 MPa air pressure. Finally, the woven fabric made from electrospun PP yams demonstrated higher hydrophobicity compared with fabric woven from commercial PP filaments, suggesting potential applications in waterproof fabrics.
机译:聚丙烯 (PP) 纱线具有低密度和优异的机械性能等优点。通过静电纺丝,PP 纱线的纤维可以从 10 到 20 μm 精炼到超细水平,从而获得更大的比表面积和更多的功能位点,从而扩大其在高价值领域的应用。在此,提出了涡流气流辅助聚合物熔融差分静电纺丝来制备 PP 超细纤维纱线。在静电场的影响下,熔融 PP 自动分裂成多个射流,这些射流通过涡流气流诱导的吸气流进一步拉伸和冷却成超细纤维。随后,利用涡流气流将多种超细纤维加捻成 PP 纱线。研究了电压、熔体进料速度和气压对 PP 静电纺丝山药形成过程以及纱线和纤维的形态和机械性能的影响。结果表明,PP 纤维的直径范围为 3 至 5 μm。PP 超细纤维山药在 56 kV 电压、0.22 g/min 进料速率和 0.3 MPa 气压条件下表现出相对较高的机械强度,为 1.6 cN/tex。最后,与商用 PP 长丝编织的织物相比,由静电纺丝 PP 山药制成的机织物表现出更高的疏水性,表明在防水织物中具有潜在的应用。

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