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首页> 外文期刊>Journal of Applied Polymer Science >Investigations on the formation of composites by injection molding of PA6 and different grafted polypropylenes and their blends
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Investigations on the formation of composites by injection molding of PA6 and different grafted polypropylenes and their blends

机译:PA6与不同接枝聚丙烯及其共混物注塑成型复合材料的研究

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摘要

Blends of different types of polypropylenes (PP) with polyamide 6 (PA6) were produced by extrusion. The PPs used were a PP homopolymer, a maleic anhydridegrafted homopolymer, and an acrylic acid-grafted homopolymer. The blends were characterized by DSC measurements, selective extraction, infrared spectroscopy, REM microscopy, melt rheology, and their mechanical properties. Three types of interactions in the blends as well as in two-component composites mold by the core-back process could be identified. Blends of PP with PA6 were not compatible, and two-component bars could not be produced. Blends of PPgAA and PA6 were made compatible during reactive extrusion. Two-component bars could be produced only with a blend containing 50 wt % PA6. The composite formation was based on the interdiffusion of PA6 in both components and the reactive compatibilization in the blends. Blends of PPgMAn were also compatibilized during reactive extrusion. The composite formation on two-component injection molding was based on two mechanisms: the interdiffusion at sites, where PA6 chains of both the components came into contact, and an interfacial reaction, where PPgMAn and PA6 came into contact. The interfacial reaction was supported by the high mobility of the first component at the temperature of the melt of the second component. (c) 2006 Wiley Periodicals, Inc.
机译:通过挤出生产不同类型的聚丙烯(PP)与聚酰胺6(PA6)的共混物。所用的PP是PP均聚物,马来酸酐接枝的均聚物和丙烯酸接枝的均聚物。通过DSC测量,选择性萃取,红外光谱,REM显微镜,熔体流变学及其机械性能对共混物进行表征。可以确定在共混物中以及在两组分复合材料模具中,通过型芯后退过程发生的三种类型的相互作用。 PP与PA6的共混物不相容,因此无法生产两组分胶条。在反应挤出过程中使PPgAA和PA6的混合物相容。只能使用含有50 wt%PA6的共混物来生产两组分皂条。复合物的形成是基于两种组分中PA6的相互扩散以及共混物中的反应性相容性。 PPgMAn的共混物在反应挤出过程中也相容。两组分注塑成型中的复合物形成基于两种机理:两种组分的PA6链相互接触的部位相互扩散,PPgMAn和PA6相互接触的界面反应。在第二组分的熔体温度下,第一组分的高迁移率支持了界面反应。 (c)2006年Wiley Periodicals,Inc.

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