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Structural Effects on the Tensile and Morphological Properties of Zeolite-filled Polypropylene Derivative Composites

机译:结构对沸石填充聚丙烯衍生物复合材料拉伸和形态性能的影响

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摘要

We have studied the effects that inorganic zeolite powder have on structurally different copolymer [poly(pro-pylene-co-ethylene)] and terpolymer [poly(propylene-co-ethylene-col-butene)] systems and the possibility of preparing suitable porous composite films.The impact strength and yield stress of the composites did not improve upon any further loading of zeolite,but the modulus increased gradually with respect to the filler loading.The experimental modulus of each of the two systems was compared with theoretical models.We performed a morphological study of the filler mixing efficiency and image analysis.The number-,weight-,and z-average air hole diameters were compared with respect to the draw ratio as well as the zeolite loading.The experimental results suggest that these two matrices can provide a new choice for preparing future multiphase polymeric porous films by stretching them unidirectionally.In particular,we suggest that a 40 wt% zeolite loading at a draw ratio of 4 is useful for porous film applications.
机译:我们研究了无机沸石粉对结构不同的共聚物[聚(丙烯-共聚-乙烯-乙烯)]和三元共聚物[聚(丙烯-共聚-乙烯-丁烯)]体系的影响,以及制备合适的多孔材料的可能性。复合材料的冲击强度和屈服应力在进一步增加沸石负载量后并没有提高,但模量随填料含量的增加而逐渐增加。将两种体系的实验模量与理论模型进行比较。对填料混合效率进行了形态学研究并进行了图像分析,比较了拉伸比和沸石负载量的气孔数,重均质量和z平均直径。实验结果表明这两种基质通过单向拉伸可为未来的多相聚合物多孔膜的制备提供新的选择。特别是,我们建议以4的拉伸比负载40 wt%的沸石是有用的用于多孔膜应用。

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