首页> 外文期刊>Polymer engineering and science >The Effect of Poly[styrene-b-(ethylene-co-butylene)-b-styrene] on Dielectric, Thermal, and Morphological Characteristics of Polypropylene/Silica Nanocomposites
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The Effect of Poly[styrene-b-(ethylene-co-butylene)-b-styrene] on Dielectric, Thermal, and Morphological Characteristics of Polypropylene/Silica Nanocomposites

机译:聚[苯乙烯-b-(乙烯-共-丁烯)-b-苯乙烯]对聚丙烯/二氧化硅纳米复合材料的介电,热和形态特性的影响

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摘要

The effect of poly[styrene-o-(ethylene-co-butylene)-o-styrene] (SEBS) copolymer on the thermal and dielectric properties of polypropylene (PP)—nanosilica (NS) composites in relation with morphological aspects revealed by atomic force microscopy (AFM) was investigated in this article. SEBS hindered the crystallization process of PP in PP/NS composites, leading to a smaller degree of crystallinity and lower perfection of crystalline structure. Broader lamellar thickness distribution was obtained in nanocomposites containing SEBS. Almost two times higher dielectric loss as compared to PP reference and two relaxation processes were detected in ε_r"(f) curves of nanocomposites. The first peak, in the same frequency domain as for the references, was assigned to α-relaxation of polymer components together with interfacial polarization. The relaxation time follows the Arrhenius law with an activation energy of 80-90 kJ/mol. For the second process, the temperature dependence of the relaxation times obeyed the VFT equation. The dielectric changes following the incorporation of SEBS support its tendency to hinder the motional processes in PP, in accordance with DSC results. A smooth transition from a phase rich in SEBS to one containing mainly PP was detected in the AFM image of the composite with the larger amount of SEBS, emphasizing the good compatibility at the PP/SEBS interface.
机译:聚[苯乙烯-邻-(乙烯-共-丁烯)-邻苯乙烯](SEBS)共聚物对聚丙烯(PP)-纳米二氧化硅(NS)复合材料的热和介电性能的影响,以及原子揭示的形貌方面本文研究了力显微镜(AFM)。 SEBS阻碍了PP / NS复合材料中PP的结晶过程,从而导致较小的结晶度和较低的晶体结构完善性。在含有SEBS的纳米复合材料中获得了更宽的层状厚度分布。纳米复合材料的ε_r“(f)曲线中的介电损耗是PP参比的近两倍,并且检测到两个弛豫过程。在与参比相同的频域中,第一个峰归属于聚合物组分的α松弛弛豫时间遵循Arrhenius律,其活化能为80-90 kJ / mol;第二步,弛豫时间的温度依赖性符合VFT方程; SEBS载体加入后介电常数发生变化根据DSC结果,在SEBS含量较高的复合材料的AFM图像中,从富含SEBS的相向主要包含PP的相平滑过渡,这表明它具有良好的相容性。在PP / SEBS界面上。

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