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Study on parameters influencing shape change of melt spun cross-shaped polypropylene and poly (lactic acid) fibers

机译:影响熔纺十字形聚丙烯和聚乳酸纤维形状变化的参数研究

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摘要

Melt spinning of cross-shaped polypropylene (PP) and poly (lactic acid) (PLA) fibers was conducted to investigate influences of polymer properties and processing conditions on cross-sectional shape change in fibers. PP fibers possessed cross-shaped profile, resembling that of the original spinneret orifice, with dull edges due to die swell. Their shape factor (SF) values (1.4-1.6) were close to that of the spinneret orifice (1.7), indicating that the complex shape of the orifice could be maintained. High melt viscosity of PP, as well as its rapid crystallization, helped preventing shape change induced by surface tension. PLA fibers, on the other hand, exhibited shape change from cross to square and to round shape when spinning temperature was increased from 200 to 220 and 240 degrees C, respectively. Their SF values (1.1-1.2) were close to unity, indicating shape change towards circular shape. Shape deviation towards circular shape in PLA fibers was mainly driven by surface tension. Slow crystallization in PLA allowed great influence of surface tension in determining shape change of the extrudate. Increasing fiber take up speed tended to decrease SF value. Such effect was small compared to that of spinning temperature.
机译:进行了十字形聚丙烯(PP)和聚(乳酸)(PLA)纤维的熔融纺丝,以研究聚合物性能和加工条件对纤维截面形状变化的影响。 PP纤维具有十字形轮廓,类似于原始的喷丝板孔,由于模头膨胀而边缘变钝。它们的形状因子(SF)值(1.4-1.6)接近喷丝板孔(1.7),表明可以保持孔的复杂形状。 PP的高熔体粘度及其快速结晶有助于防止表面张力引起的形状变化。另一方面,当纺丝温度分别从200℃增加到220℃和240℃时,PLA纤维的形状从十字形变为方形和圆形。 SF值(1.1-1.2)接近于1,表明形状朝圆形变化。 PLA纤维向圆形的形状偏差主要由表面张力驱动。在PLA中缓慢的结晶过程对确定挤出物的形状变化具有很大的表面张力影响。增加纤维的卷绕速度倾向于降低SF值。与纺丝温度相比,这种影响很小。

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