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Role of nanoclay in determining microfibrillar morphology development in PP/PBT blend nanocomposite fibers

机译:纳米粘土在决定PP / PBT共混纳米复合纤维中微原纤形态发展中的作用

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摘要

The aim of this work is to study the effect of organically modified montmorillonite (Cloisite 30B) on the microfibril formation of poly (butylene terephthalate) droplets in polypropylene/poly (butylene terephthalate)/ organoclay blend nanocomposites during melt spinning process. An attempt is also made to investigate the effect of compatibilizer on partitioning of organoclay in this system. The nanocomposite samples were prepared via melt compounding by using a co-rotating twin screw extruder. The melt viscoelastic results along with the SEM micrographs revealed that nanoclay can have different effects on microfibril formation depending on the nanoclay partitioning which could be strongly controlled by nanoclay concentration. In the samples with low organoclay content (1 wt%), the nanoclay platelets mostly located in the interface and had no appreciable effect on the extent of microfibril formation while at higher organoclay loadings major part of nanoclay selectively partitioned inside the PBT droplets which reduced the droplet deformability and,hence, the extent of microfibril formation. This led to fibrils with rough surface and broad diameter size distribution which could be related to non-uniform organoclay distribution inside the PBT droplets as evidenced by TEM micrographs. However, incorporation of compatilizer was found to promote the migration of nanoclay from PBT to PP matrix; the mechanism which improved the microfibrillar morphology development.
机译:这项工作的目的是研究在熔融纺丝过程中有机改性的蒙脱石(Cloisite 30B)对聚丙烯/聚对苯二甲酸丁二醇酯/有机粘土共混纳米复合材料中聚对苯二甲酸丁二醇酯微滴形成微纤丝的影响。还尝试研究增容剂对该体系中有机粘土分配的影响。通过使用同向旋转双螺杆挤出机通过熔融混合制备纳米复合材料样品。熔体粘弹性结果和SEM显微照片表明,纳米粘土对微原纤维的形成有不同的影响,具体取决于纳米粘土的分配,而纳米颗粒的分配可以受纳米粘土浓度的强烈控制。在有机粘土含量低(1 wt%)的样品中,纳米粘土薄片大部分位于界面,对微原纤维形成的程度没有明显影响,而在较高的有机粘土负载下,纳米粘土的主要部分选择性地分配在PBT液滴内部,从而降低了液滴的可变形性,以及因此而形成微纤维的程度。这导致原纤维具有粗糙的表面和较宽的直径尺寸分布,这可能与PBT液滴内部的有机粘土分布不均匀有关,如TEM显微照片所证明的。然而,发现加入相容剂可促进纳米粘土从PBT向PP基质的迁移。改善微纤维形态发展的机理。

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