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首页> 外文期刊>International Journal of Polymeric Materials >Polyolefin/PET Microplates-Reinforced Composites with Improved Barrier Properties
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Polyolefin/PET Microplates-Reinforced Composites with Improved Barrier Properties

机译:具有改进的阻隔性能的聚烯烃/ PET微板增强复合材料

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摘要

In this article an attempt was undertaken to improve the barrier properties of polyolefin films against oxygen by creating internal micro-platelets of a second polymer component using the previously developed concept of micro-fibrils reinforced polymer-polymer composites (MFC). By means of melt blending of partners with mutually complementing barrier properties, and by extrusion and pressing the extrudate in order to convert the dispersed spherical particles of the minor component into platelet-like ones with thickness of about 1μm, it is possible to improve the barrier properties of the neat major component. The described morphologic transition of the dispersed phase is proven by Scanning Electron Microscopy. Attempts to manufacture thin films from such pressed blends with improved barrier properties in industrial-scale experiments via extrusion blow molding or slit-die extrusion failed so far. This was due to the fact that void formations occurred during the processing, as already reported for blends of thermoplastics with liquid crystalline polymers. For this reason, using compression molding, films were prepared from the pressed strips, in which the platelets can be converted into thin sheets depending on the processing conditions. Compression molded plates or films of polypropylene / poly (ethylene terephthalate) (70/30 by wt) composites with an MPC structure (MPC = micro-platelets rein forced composites) showed up to four times better barrier properties against oxygen than films of the neat PP.
机译:在本文中,尝试使用先前开发的微纤维增强聚合物-聚合物复合材料(MFC)概念,通过创建第二种聚合物组分的内部微片,来改善聚烯烃薄膜对氧气的阻隔性能。通过将具有互为补充的阻隔性能的配合物熔融共混,并通过挤压和挤压挤出物,以将次要成分的分散球形颗粒转化为厚度约为1μm的片状颗粒,可以改善阻隔性主要成分的特性。所描述的分散相的形态学转变通过扫描电子显微镜证实。迄今为止,在工业规模的实验中尝试通过挤出吹塑或狭缝模头挤出法从具有改进的阻隔性能的这种压制共混物制造薄膜的尝试失败。这是由于这样的事实,即在加工过程中会形成空隙,正如热塑性塑料与液晶聚合物的混合物所报道的那样。因此,使用压缩成型,由压制的条制成膜,其中根据加工条件,血小板可以转变成薄片。具有MPC结构的聚丙烯/聚对苯二甲酸乙二酯(70/30重量比)复合材料的压模板或膜(MPC =微片增强复合材料)对氧气的阻隔性是纯膜的四倍PP。

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