A Study on the Influence of Polypropylene Melt Flow Index on Nonwoven Fibers Produced Through Hot Melt Centrifugal Spinning

聚丙烯 纺纱 材料科学 复合材料 熔体流动指数 熔融纺丝 无纺布 流量(数学) 纤维 机械 聚合物 共聚物 物理
作者
Jason Gunther,Mélanie Girard,Martine Dubé,Ilyass Tabiai
出处
期刊:Journal of Manufacturing Science and Engineering-transactions of The Asme [ASM International]
卷期号:147 (4)
标识
DOI:10.1115/1.4067165
摘要

Abstract A hot melt centrifugal spinning process is used to manufacture polypropylene nonwoven textile such as those found in the filtering layers of medical masks. The fiber morphology and diameter distribution is influenced by the extrusion geometry and the polymer viscosity, often characterized by its melt flow index. These important geometric and physical aspects and their effects on the fiber quality are investigated in this work. The characteristics of the obtained nonwoven textile are also compared to those of the filtering layers found in a medical mask, usually made with the meltblown process. A custom-designed open-source lab-scale centrifugal spinning apparatus and the spinneret from a commercial cotton candy machine were used. This device was built at a very low cost while good quality fibers may be obtained compared to electrospinning. Its versatility allows to easily change the extrusion features. Here, a grid, nozzles, and a nozzlefree geometry, in which the polymer is extruded through a slit, were used. The behavior of five grades of polypropylene with five different melt flow indexes were compared in this process. Results show that fiber morphology improves when using the nozzle and nozzlefree geometries with a high melt flow index polymer, which were closer to the medical mask filtering layer.
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