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Microfibril-Reinforced Composites from PE/PET Blends: Effect of Reinforcement Size on Oxygen Permeability

机译:来自PE / PET共混物的微纤维增强复合材料:增强尺寸对氧气渗透性的影响

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The objective of this study was to manufacture and investigate the properties of barrier films made from microfibril-reinforced polymer composites (MFCs) based on blends of linear low density polyethylene (PE) and poly(ethylene terephthalate) (PET). Blends containing 30wt% of PET were prepared and extruded into strands. These were then subjected to cold drawing and compression moulded into thin films. The permeability of the films to oxygen gas was measured using a permeation test chamber and the effect of the draw ratio on the size of the reinforcing fibrils was also observed. Scanning electron microscope (SEM) revealed substantial differences in the structures of neat and MFC films. A model developed for predicting the permeability of filled polymer composite films was modified and compared to the test results. The draw ratios of the MFCs did not appear to have a significant effect on oxygen permeation, despite altering the dimensions of the reinforcing fibrils. The MFC films were found to be half as permeable as the neat polymer films.
机译:本研究的目的是基于线性低密度聚乙烯(PE)和聚(乙二醇酯)(PET)的共混物,制造和研究由微纤维增强聚合物复合材料(MFCs)制备的阻隔膜的性质。制备含有30wt%PET的共混物并挤出到股线中。然后将它们进行冷拉伸和压缩成薄膜。使用渗透测试室测量薄膜对氧气的渗透率,并且还观察到拉伸比对增强原纤维的尺寸的影响。扫描电子显微镜(SEM)揭示了整洁和MFC膜的结构的显着差异。改变了一种用于预测填充聚合物复合膜的渗透性的模型并与测试结果进行比较。尽管改变了增强原纤维的尺寸,但MFCs的拉伸比对氧气渗透性没有显着影响。发现MFC膜是作为整齐的聚合物薄膜可渗透的一半。

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