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首页> 外文期刊>Composites >In situ fibrillation of polymeric nucleating agents in polypropylene and subsequent transcrystallization propelled by high-pressure water penetration during water-assisted injection molding
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In situ fibrillation of polymeric nucleating agents in polypropylene and subsequent transcrystallization propelled by high-pressure water penetration during water-assisted injection molding

机译:聚丙烯中聚合物成核剂的原位原纤化,以及随后在水辅助注射成型过程中高压渗水推动的结晶转变

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摘要

In situ microflbrillar reinforced composites (MFCs) parts of polypropylene (PP) and a special polymeric nucleating agent (acrylonitrile-styrene copolymer, SAN) with four weight ratios (PP/SAN; 98/2, 96/4, 94/6, and 92/8) were molded via water-assisted injection molding (WAIM). The phase morphology and crystalline structure of the WAIM MFCs parts were studied. It was found that high shear stress and cooling rate caused by the high-pressure water penetration during the WAIM could result in the in situ fibrillation of the SAN droplet, followed by the formation of transcrystals at the interface between the SAN microfiber and PP matrix. Moreover, β-form spherulites can be induced by the SAN. The contents of the transcrystals and β-form spherulites were dependent on the SAN content and melt temperature. Interestingly, a WAIM PP/SAN MFCs part with nearly half of its thickness totally dominated by transcrystals and the other half containing high contents of β-form spherulites can be obtained at proper SAN content and melt temperature. This work is expected to provide a promising way to tailor the crystalline structure of the molded parts.
机译:原位微纤维增强复合材料(MFCs)的一部分是聚丙烯(PP)和一种特殊的聚合物成核剂(丙烯腈-苯乙烯共聚物,SAN),具有四种重量比(PP / SAN; 98 / 2、96 / 4、94 / 6和通过水辅助注射成型(WAIM)成型92/8)。研究了WAIM MFCs零件的相形态和晶体结构。结果发现,WAIM过程中高压水渗透引起的高剪切应力和冷却速率可能导致SAN液滴原位原纤化,然后在SAN超细纤维和PP基体之间的界面处形成反晶。此外,SAN可以诱导形成β型球晶。反晶体和β型球晶的含量取决于SAN含量和熔体温度。有趣的是,在适当的SAN含量和熔融温度下,可以获得WAIM PP / SAN MFCs零件,其厚度的近一半完全由反晶构成,而另一半则包含高含量的β型球晶。预期这项工作将提供一种有前途的方法来调整成型零件的晶体结构。

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  • 来源
    《Composites》 |2013年第8期|215-223|共9页
  • 作者单位

    Lab for Micro Molding and Polymer Rheology, Center for Polymer Processing Equipment and Intellectualization, South China University of Technology, Guangzhou 510640, PR China;

    Lab for Micro Molding and Polymer Rheology, Center for Polymer Processing Equipment and Intellectualization, South China University of Technology, Guangzhou 510640, PR China;

    Lab for Micro Molding and Polymer Rheology, Center for Polymer Processing Equipment and Intellectualization, South China University of Technology, Guangzhou 510640, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Polymer-matrix composites (PMCs); B. Microstructure; B. Interface/interphase; E. Injection moulding;

    机译:A.聚合物基复合材料(PMC);B.微观结构;B.接口/相间;E.注塑;

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