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首页> 外文期刊>Macromolecules >Shear-induced interfacial structure of isotactic polypropylene (iPP) in iPP/fiber composites
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Shear-induced interfacial structure of isotactic polypropylene (iPP) in iPP/fiber composites

机译:剪切诱导的iPP /纤维复合物中等规聚丙烯(iPP)的界面结构

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摘要

The shear-induced interfacial structure of iPP in pulled iPP/fiber composites was studied by optical microscopy. Although the Kevlar fiber shows basically no nucleation ability for the iPP in quiescent melt under chosen conditions, different interfacial morphologies have been observed by pulling the fiber embedded in the matrix. It was found that the polymorphic nature of cylindrites developed on the sheared layer along the fiber strongly depended on the fiber-pulling rate, the duration of pulling, and the temperatures used for fiber pulling and subsequent crystallization. At lower fiber-pulling rates, alpha-iPP cylindrites were always the observed morphologies no matter how long the fiber was pulled. At moderate pulling rates, the interfacial morphologies varied from pure alpha-iPP cylindrites, to mixed alpha- and beta-iPP cylindrites, and finally to the beta-iPP cylindrites, depending on the pulling time. At higher fiber-pulling rates beta-cylindrite structures of iPP were the observed morphologies. According to the observed morphological features, it is suggested that there exists an orientation window of the iPP molecules in the molten state, which enables the formation of beta-iPP crystals.
机译:通过光学显微镜研究了拉力的iPP /纤维复合材料中iPP的剪切诱导界面结构。尽管凯夫拉尔纤维在选定条件下在静态熔体中对iPP基本上不显示成核能力,但通过拉动嵌入基体中的纤维可以观察到不同的界面形态。已经发现,沿着纤维在剪切层上形成的圆柱体的多晶型性质在很大程度上取决于纤维的拉制速度,拉制的持续时间以及用于拉制纤维和随后结晶的温度。在较低的光纤拉动速率下,无论将光纤拉动多长时间,α-iPP柱形晶体始终是观察到的形态。在中等拉速下,取决于拉拔时间,界面形态从纯α-iPP圆柱形,混合的α-和β-iPP圆柱形,最后到β-iPP圆柱形。在较高的拉纤速率下,观察到的形态是iPP的β柱形结构。根据观察到的形态学特征,建议在熔融状态下存在iPP分子的取向窗,这使得能够形成β-iPP晶体。

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