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Effect of Flexible Fibers on Rheological Properties of Poly(Lactic Acid) Composites under Elongational Flow

机译:伸长率下柔性纤维对聚乳酸复合材料流变性能的影响

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摘要

Rheological properties of polymer composites with flexible fine fibers are studied employing poly(lactic acid) PLA containing a small amount of polymeric fibers of poly(tetrafluoroethylene) PTFE, poly(butylene terephthalate) PBT, and poly(4-methyl-1-pentene) PMP. Both PBT and PMP fibers are prepared by hot-stretching of the blends with PLA, whereas PTFE fibers are obtained by simple mixing of PLA and PTFE powder at the temperature between Tm's of both polymers. The polymer composites with PTFE and PBT fibers whose diameters are smaller than 1 µm show marked strain-hardening behavior in elongational viscosity, i.e., rapid increase in the transient elongational viscosity with time or strain. On the contrary, the composite with PMP fibers with a diameter of ca. 2 µm shows no strain-hardening, although the elongational viscosity is enhanced in the measured strain/time range irrespective of the strain rate.
机译:使用包含少量聚四氟乙烯PTFE,聚对苯二甲酸丁二醇酯PBT和聚4-甲基-1-戊烯的聚合物纤维的聚乳酸PLA研究了具有柔性细纤维的聚合物复合材料的流变性能PMP。 PBT和PMP纤维都是通过将共混物与PLA热拉伸而制备的,而PTFE纤维是通过在两种聚合物的Tm之间的温度简单混合PLA和PTFE粉末而获得的。具有小于1μm的直径的PTFE和PBT纤维的聚合物复合材料在伸长粘度方面表现出明显的应变硬化行为,即,瞬时伸长粘度随时间或应变而快速增加。相反,具有PMP纤维的复合材料的直径约为1。 2μm没有应变硬化,尽管在所测量的应变/时间范围内伸长粘度增加,而与应变速率无关。

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