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首页> 外文期刊>Macromolecular symposia >Influence of phase morphology on molecular mobility of poly(propylene)-(ethylene-vinyl acetate) copolymer blends
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Influence of phase morphology on molecular mobility of poly(propylene)-(ethylene-vinyl acetate) copolymer blends

机译:相形态对聚(丙烯)-(乙烯-乙酸乙烯酯)共聚物共混物分子迁移率的影响

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摘要

The dynamic mechanical and dielectric behaviours of Polypropylene (PP) and (Ethylene-Vinyl Acetate) Copolymer (EVA) blends are reported as a function of the morphology. For EVA contents lower than 20%, blends show the two-phase morphology characteristic of immiscible blends, with spherical EVA droplets finely dispersed in the PP matrix. After stretching in the molten state, the morphology of EVA fibers is observed. Mechanical Relaxation Spectroscopy display three relaxation processes: the EVA and PP alpha-relaxations associated to the glass transitions and a beta-transition corresponding to a PP crystalline phase relaxation. The PP alpha-relaxation shifts to higher temperatures when EVA presents a fiber morphology, corresponding to a decrease of PP chain mobility since it is hindered by the reinforcement effect of EVA fibers. Quite different results are obtained by DRS analysis. In blends containing EVA fibers, only one main relaxation associated to the EVA alpha-transition is observed whereas one additional relaxation can be noticed in the blends containing EVA droplets. This new relaxation might be assigned to interfacial polarization effects, phenomena that are sometimes observed in heterogeneous polymer blends when a low content of one polar component is embedded in a non conductive matrix. In this case, the occurrence of a characteristic interfacial polarization relaxation appears to be correlated to the accessible experimental frequency.
机译:聚丙烯(PP)和(乙烯-乙酸乙烯酯)共聚物(EVA)共混物的动态力学和介电行为据报道是形态的函数。当EVA含量低于20%时,共混物表现出不混溶共混物的两相形态特征,球形EVA液滴细分散在PP基体中。在熔融状态下拉伸后,观察到EVA纤维的形态。机械弛豫光谱显示了三个弛豫过程:与玻璃化转变相关的EVA和PPα-弛豫和与PP结晶相弛豫相对应的β-转变。当EVA呈现纤维形态时,PPα松弛转变为更高的温度,这对应于PP链迁移率的降低,因为它受到EVA纤维的增强作用的阻碍。通过DRS分析获得了完全不同的结果。在包含EVA纤维的共混物中,仅观察到与EVAα-转变相关的主要松弛,而在包含EVA液滴的共混物中可观察到另一种松弛。这种新的弛豫可能归因于界面极化效应,当低含量的一种极性组分嵌入非导电基质中时,这种现象有时会在非均质聚合物共混物中观察到。在这种情况下,特征性界面极化弛豫的出现似乎与可达到的实验频率相关。

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