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Barrier improvement of the biaxial oriented polypropylene films using passive mechanisms

机译:利用被动机理改善双轴取向聚丙烯薄膜的阻隔性

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Barrier properties of the biaxial oriented polypropylene (BOPP) films are the most important properties in food packaging industry. In this study different compatibilizers and materials were examined in order to find an appropriate blend composition to minimize the oxygen permeability of the films. It was observed that using organoclay and nanocomposits have positive effect on the oxygen permeability although the kind of compatibilizer is important. Through all evaluated materials the PVA (Poly(vinyl alcohol)) and MA (Maleic Anhydride) were the most successful selection for this goal. The BOPP film blended by PVA achieved the lowest oxygen transfer rate (300 cc 20μm/m224h atm) in compared with all other conventional BOPP films. In a novel action, both modified clay and PVA were used to produce a resistant blend. As each component was successfully improved the barrier properties of the BOPP film, it was tried to examine the synergistic effect of using both of them at the same time. The best oxygen permeability (220 cc 20μm/m224h atm) was found for the PP/gPP/PVA+Organoclay with the composition of 60/10/20+10 weigh %. X-ray analysis and scanning electron microscope were used to identify the occurred event in the polymers.
机译:双轴取向聚丙烯(BOPP)薄膜的阻隔性能是食品包装行业中最重要的性能。在这项研究中,检查了不同的增容剂和材料,以找到合适的共混物成分,以使薄膜的透氧性最小。已观察到,尽管增容剂的种类很重要,但使用有机粘土和纳米复合材料对透氧性有积极作用。在所有评估的材料中,PVA(聚乙烯醇)和MA(马来酸酐)是实现此目标最成功的选择。与所有其他常规BOPP膜相比,通过PVA混合的BOPP膜实现了最低的氧气传输速率(300 cc20μm/ m224h atm)。在一种新颖的作用中,改性粘土和PVA均用于生产抗性混合物。由于成功地改善了BOPP膜的阻隔性能,试图检验同时使用它们的协同作用。发现PP / gPP / PVA +有机粘土的最佳氧气渗透性(220 cc20μm/ m224h atm)组成为60/10/20 + 10 wt%。使用X射线分析和扫描电子显微镜确定聚合物中发生的事件。

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