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首页> 外文期刊>Journal of Applied Polymer Science >Study on Morphology and Viscoelastic Properties of PP/PET/SEBS Ternary Blend and their Fibers
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Study on Morphology and Viscoelastic Properties of PP/PET/SEBS Ternary Blend and their Fibers

机译:PP / PET / SEBS三元共混物及其纤维的形貌和粘弹性

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摘要

The morphology development of polypropylene (PP)/polyethylene terephthalate (PET) /styrene-ethylene-butylene-styrene (SEBS) ternary blends and their fibers were studied by means of scanning electron microscopy (SEM) in conjunction with the melt linear viscoelastic measurements. The morphology of the blends was also predicted by using Harkin's spreading coefficient approach. The samples varying in composition with PP as the major phase and PET and SEBS as the minor phases were considered. Although SEM of the binary blends showed matrix-dispersed type morphology, the ternary blend samples exhibited a morphological feature in which the dispersed phase formed aggregates consisting of both PET and SEBS particles distributed in the PP matrix. The SEM of the blend samples containing 30 and 40 wt % of total dispersed phase showed an agglomerated structure formed between the aggregates. The SEM of the PP/PET binary fiber blends showed long well-oriented n-microfibrils of PET whereas in the ternary blends, the microfibrils were found to have lower aspect ratio with a fraction of the SEBS stuck on the microfibril fracture surfaces. These results were attributed to a core-shell type morphology in which the PET and SEBS formed the core-shells distributed in the matrix. The melt viscoelastic behavior of the ternary blends containing less than 30 wt %, of the total dispersed phase was found to be similar to the matrix and binary blend samples whereas the samples containing 30 and 40 wt % of dispersed phases exhibited a pronounced viscosity upturn and nonterminal storage modulus in low frequency range. These results were found to be in good agreement with the morphological results.
机译:聚丙烯(PP)/聚对苯二甲酸乙二酯(PET)/苯乙烯-乙烯-丁烯-苯乙烯(SEBS)三元共混物及其纤维的形态学发展是通过扫描电子显微镜(SEM)结合熔体线性粘弹性测量研究的。还通过使用Harkin的扩展系数方法预测了混合物的形态。考虑了组成不同的样品,其中PP为主要相,PET和SEBS为次要相。尽管二元共混物的SEM显示出基质分散型形态,但三元共混物样品表现出形态特征,其中分散相形成由分布在PP基体中的PET和SEBS颗粒组成的聚集体。包含总分散相的30重量%和40重量%的共混物样品的SEM显示出在聚集体之间形成的附聚结构。 PP / PET二元纤维共混物的SEM显示了长取向良好的PET正微纤维,而在三元共混物中,发现微纤维的长径比较低,而SEBS的一部分粘附在微纤维断裂表面上。这些结果归因于核-壳型形态,其中PET和SEBS形成了分布在基质中的核-壳。发现占总分散相少于30 wt%的三元共混物的熔体粘弹性行为与基质和二元共混物样品相似,而含有30和40 wt%分散相的样品表现出明显的粘度上升和低频范围内的非终端储能模量。发现这些结果与形态学结果非常吻合。

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