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Flexible and strong ternary blends of poly(vinyl chloride), poly(butylene adipate)and nanoparticle-plasticizers

机译:聚氯乙烯,聚己二酸丁二酯和纳米粒子增塑剂的柔性强三元共混物

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摘要

Multiple property enhancement was achieved for ternary blends of PVC, poly(butylene adipate) (PBA) plasticizer and PBA-grafted nanofillers as compared to ternary blends with untreated nanofillers. The blends with surface modified halloysite, kaolin or silicon dioxide nanofillers all exhibited higher stress at break and higher strain at break as compared to the corresponding composites with untreated nanoparticles. The strain at break was similar or improved compared to binary PVC/PBA blends. Most significant improvement was observed for the films containing surface treated halloysite nanofillers. Over 100% increase in stress at break and strain at break was obtained when compared to the corresponding nanocomposite containing untreated halloysite fillers. In addition to tensile testing the prepared films were characterized by DSC, SEM, TGA and FTIR imaging to evaluate the miscibility and thermal properties. Interestingly the FTIR imaging analysis revealed that the surface grafting of halloysite resulted not only in improved dispersion of halloysite filler, but also in more homogenous distribution of PBA plasticizer in the blends. During aging in contact with aqueous solution the films containing kaolin exhibited the smallest weight loss. This is explained by the plate like structure of kaolin which prevents the migration of PBA molecules.
机译:与未经处理的纳米填料的三元共混物相比,PVC,聚己二酸丁二醇酯(PBA)增塑剂和PBA接枝的纳米填料的三元共混物具有多种性能增强。与未经处理的纳米粒子的相应复合材料相比,具有表面改性的埃洛石,高岭土或二氧化硅纳米填料的共混物均表现出较高的断裂应力和较高的断裂应变。与二元PVC / PBA共混物相比,断裂应变相似或有所改善。对于含有经表面处理的埃洛石纳米填料的薄膜,观察到了最显着的改善。与相应的含有未经处理的埃洛石填料的纳米复合材料相比,断裂应力和断裂应变增加了100%以上。除拉伸测试外,还通过DSC,SEM,TGA和FTIR成像对制备的薄膜进行表征,以评估混溶性和热性能。有趣的是,FTIR成像分析表明,埃洛石的表面接枝不仅改善了埃洛石填料的分散性,而且使共混物中的PBA增塑剂分布更加均匀。在与水溶液接触的老化过程中,含有高岭土的薄膜表现出最小的重量损失。高岭土的板状结构可以防止PBA分子迁移,从而解释了这一点。

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  • 作者

    Yin, Bo; Hakkarainen, Minna;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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