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Nanotechnology-Based Strategy to Upgrade the Performances of Plastic Flexible Film Waste

机译:基于纳米技术的塑料柔性薄膜废料性能提升策略

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摘要

The aim of this work was to improve the performances of Fil-s (film-small), a recycled material obtained from plastic flexible film waste that is made of polyethylene and a minor amount of polypropylene, with traces of polar contaminants (polyamides, maleic anhydride, etc.). The idea was to upgrade the material’s mechanical properties by applying a nanotechnology-based strategy that takes advantage of the composition of Fil-s. In particular, different amounts of copolyamide (CoPA) and its masterbatch with an organic-modified nanosilicate were melt compounded with Fil-s in a twin-screw extruder. The good affinity between Fil-s and CoPA, proved by means of spectroscopic and rheological analysis, allowed for the obtaining of a well-refined morphology for the neat and hybrid blends. This resulted in very interesting increments of the strain at break, which was particularly impressive (10 times higher) in the case of the blend with the lower amount of copolyamide masterbatch, but without sacrificing the stiffness and strength of Fil-s.
机译:这项工作的目的是提高Fil-s(小薄膜)的性能,Fil-s是一种可回收的材料,该材料是由塑料柔性薄膜废料制成的,该废料由聚乙烯和少量的聚丙烯制成,带有微量极性污染物(聚酰胺,马来酸)酸酐等)。这个想法是通过应用基于纳米技术的策略来利用Fil-s的成分来提高材料的机械性能。特别地,将不同量的共聚酰胺(CoPA)及其母料与有机改性的纳米硅酸盐在双螺杆挤出机中与Fil-s熔融混合。通过光谱学和流变学分析证明,Fil-s和CoPA之间具有良好的亲和力,从而可以为纯净和混合共混物获得精炼的形态。这导致断裂应变非常有趣的增加,在共混物与较少量的共聚酰胺母料混合的情况下,这尤其令人印象深刻(高10倍),但又不牺牲Fil-s的刚度和强度。

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