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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Polypropylene Nanocomposites with Thermally Stable Imidazolium Modified Clay: Mechanical Modeling and Effect of Compatibilizer
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Polypropylene Nanocomposites with Thermally Stable Imidazolium Modified Clay: Mechanical Modeling and Effect of Compatibilizer

机译:热稳定的咪唑鎓改性粘土聚丙烯纳米复合材料:力学建模和增容剂的作用

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摘要

Thermally stable imidazolium modification as compared to the conventional ammonium modification is chosen to prepare polypropylene nanocomposites. Different volume fractions of organo-montmorillonite are used to generate polymer nanocomposites and the effect of the modified clay on mechanical properties is studied. The mechanical properties are also compared with Halpin-Tsai models and its modified versions to achieve better insight into the system. Addition of small amount of compatibilizer enhanced the extent of delamination of the filler. Compatibilizers are selected on the basis of their chemical nature, molecular weight, amount of grafting, and location of the polar groups. Incompatibility of the surface modification with the compatibilizer is suspected to counterbalance the delamination effect thus resulting in no change or deterioration of the oxygen permeation through the composite films. However, the tensile modulus is enhanced on addition of comaptibilizer owing to increased exfoliation, which exceeded the amount of matrix plasticization caused by the addition of the low-molecular weight compatibilizer. The compatibilizers neither affected the crystallization behavior of polymer nor the thermal behavior of the resulting composite.
机译:与常规铵改性相比,选择热稳定的咪唑鎓改性来制备聚丙烯纳米复合材料。使用不同体积分数的有机蒙脱土来生成聚合物纳米复合材料,并研究了改性粘土对机械性能的影响。还将机械性能与Halpin-Tsai模型及其修改版本进行比较,以更好地了解系统。添加少量的增容剂会增加填料的分层程度。根据相容剂的化学性质,分子量,接枝量和极性基团的位置选择相容剂。怀疑表面改性剂与相容剂的不相容性抵消了层离作用,因此导致通过复合膜的氧渗透性没有变化或变差。然而,由于增加的剥落而增加了相容剂时拉伸模量得以提高,其超过了由于加入低分子量相容剂而引起的基质增塑的量。相容剂既不影响聚合物的结晶行为也不影响所得复合材料的热行为。

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