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首页> 外文期刊>Journal of Applied Polymer Science >Effect of the polymer microstructure on the behavior of syndiotactic polypropylene/organophilic layered silicate composites
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Effect of the polymer microstructure on the behavior of syndiotactic polypropylene/organophilic layered silicate composites

机译:聚合物微观结构对间同立构聚丙烯/亲有机层状硅酸盐复合材料行为的影响

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摘要

Syndiotactic polypropylenes (sPPs) with several microstructures (i.e., syndiotacticities and molecular weights) and synthesized by means of two metallocenic catalysts were melt-blended with 1 and 3 wt % organophilic layered silicates in the presence of a compatibilizer. X-ray diffraction and transmission electron microscopy analysis showed that the clay was well dispersed in the composites, although the filler morphology depended on the polymer microstructure. Polypropylenes with low syndiotacticities and molecular weights presented the best clay dispersion. Nonisothermal differential scanning calorimetry analysis showed that the polymer microstructure and the clay content modified the thermal behavior of the composites. The compatibilizer and the clay acted as nucleant agents to increase the crystallization temperature of the matrix. Moreover, the double endothermic peak observed during heating scan and associated with the melt/recrystallization/remelt processes of the pure polymer matrix was reduced in the composites. With regard to the mechanical properties under tensile conditions, a synergic effect of the compatibilizer and the clay was observed. In particular, the addition of the compatibilizer alone was able to increase by about 20% the elastic modulus relative to the neat samples, whereas increases between 35 and 50% were measured when the clay was also added, depending on the polymer microstructure. Our results show that the microstructure of sPPs had strong effects on the behavior of its composites with clay in the presence of a compatibilizer.
机译:在相容剂的存在下,将具有两种微观结构(即间同立构规整度和分子量)并通过两种茂金属催化剂合成的间同立构聚丙烯(sPPs)与1和3 wt%的亲有机层状硅酸盐熔融共混。 X射线衍射和透射电镜分析表明,尽管填料的形态取决于聚合物的微观结构,但粘土在复合物中的分散性很好。具有低间同立构规整度和分子量的聚丙烯呈现出最佳的粘土分散性。非等温差示扫描量热法分析表明,聚合物的微观结构和粘土含量改变了复合材料的热性能。相容剂和粘土充当成核剂以增加基体的结晶温度。此外,在复合材料中,在加热扫描期间观察到的与纯聚合物基质的熔融/重结晶/重熔过程相关的双吸热峰减少了。关于拉伸条件下的机械性能,观察到增容剂和粘土的协同作用。特别地,单独添加的增容剂相对于纯净的样品能够增加约20%的弹性模量,而当还添加粘土时,根据聚合物的微结构,测得的增幅为35%至50%。我们的结果表明,在增容剂的存在下,sPPs的微观结构对其与粘土的复合材料的行为有很强的影响。

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