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首页> 外文期刊>Chemical engineering journal >Lightweight and tough nanocellular PP/PTFE nanocomposite foams with defect-free surfaces obtained using in situ nanofibrillation and nanocellular injection molding
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Lightweight and tough nanocellular PP/PTFE nanocomposite foams with defect-free surfaces obtained using in situ nanofibrillation and nanocellular injection molding

机译:轻质和坚韧的纳米细胞PP / PTFE纳米复合泡沫,其使用原位纳米纤维和纳米粒细胞注射成型获得的无缺陷表面

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摘要

Lightweight plastic materials are important for saving resources and energy, reducing environmental pollution, and achieving sustainable development. Foam injection molding is a promising technology for manufacturing lightweight plastic components. However, these plastic components present poor mechanical properties and imperfect surface appearances. Herein, we reported a novel strategy to prepare lightweight and tough polypropylene (PP)/polytetrafluoroethylene (PTFE) nanocomposite parts with defect-free surfaces by combining in situ fibrillation and nanocellular injection molding technologies. The nano-fibrillary PP/PTFE nanocomposite was firstly prepared using an in situ method based on twin-screw compounding. Scanning electron microscopy (SEM), rheological and differential scanning calorimetry (DSC) analysis, combined with online optical microscopy observation, demonstrated the network structure of PTFE nanofibrils and its positive effects on melt strength and promoting crystallization. Using nanofibrillary nanocomposites, we achieved nanocellular foaming, for the first time, using the foam injection molding process. The nanocellular PP/PTFE nanocomposite foam thus obtained significantly enhanced mechanical properties compared to the regular PP foam, and even superior strength and ductility compared to unfoamed PP. In particular, the impact strength of the nanocellular foam was 700% higher than that of the regular foam and 200% higher than that of the unfoamed product. Moreover, unlike regular foam, the nanocellular PP/PTFE nanocomposite foam showed outstanding surface appearance without any silver or swirl marks. More importantly, the whole process was facile, flexible, efficient, and easy to scale-up, and could be easily extended to other materials. The remarkable mechanical performance and surface appearance, combined with the flexible and extendable process, confers nanocellular PP/PTFE nanocomposite foams a promising future in many advanced applications where both lightweight and mechanical integrity are required.
机译:轻质塑料材料对于节省资源和能源,减少环境污染以及实现可持续发展至关重要。泡沫注塑成型是制造轻质塑料部件的有希望的技术。然而,这些塑料部件存在差的机械性能和不完美的表面外观。在此,我们通过组合原位纤维化和纳米蜂窝注塑技术,通过组合使用缺陷表面来制备轻质和坚韧的聚丙烯(PP)/聚四氟乙烯(PTFE)纳米复合材料部件的新策略。首先使用基于双螺杆复合的原位法制备纳米纤维PP / PTFE纳米复合材料。扫描电子显微镜(SEM),流变和差扫描量热法(DSC)分析,与在线光学显微镜观察结合,证明了PTFE纳米纤维的网络结构及其对熔体强度和促进结晶的积极作用。使用纳米纤维纳米复合材料,我们首次使用泡沫注射成型方法实现纳米细胞发泡。由此获得的纳米细胞PP / PTFE纳米复合泡沫与常规PP泡沫相比显着增强,甚至与未发泡的PP相比甚至更优异的强度和延展性。特别地,纳米细胞泡沫的冲击强度比规则泡沫的冲击强度高700%,比未发泡产品高出200%。此外,与常规泡沫不同,纳米细胞PP / PTFE纳米复合泡沫显示出优异的表面外观,无需任何银或旋流标记。更重要的是,整个过程都很容易,灵活,高效,易扩大,并且可以很容易地扩展到其他材料。具有显着的机械性能和表面外观,结合柔性和可伸缩的工艺,赋予纳米细胞PP / PTFE纳米复合泡沫在许多先进应用中,需要轻量化和机械完整性。

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