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High-density polyethylene/recycled HDPE/nanoclay composites using an amine-alcohol modified polyethylene as a compatibilizer

机译:使用胺 - 醇改性聚乙烯作为增容剂的高密度聚乙烯/再循环HDPE /纳米粘土复合材料

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摘要

The effect of a high-density polyethylene grafted amine alcohol (HDPE-g-DMAE) as compatibilizer on the mechanical, rheological and morphological characteristics of polyethylene/polyethylene post-consumer recycled blends (HDPE/rHDPE) reinforced with nanoclay was studied. Blends of HDPE with high rHDPE contents, more than 60% (wt) of rHDPE, were evaluated. HDPE bottles were manually separated from municipal solid waste, washed, grinded, and finally compounded at various concentrations with virgin HDPE and nanoclay. The effect of this HDPE-g-DMAE was compared with conventional polyethylene maleic anhydride (HDPE-g-MA) compatibilizer. FTIR characterization confirmed the formation of this HDPE-g-DMAE compatibilizer. The mechanical properties of uncompatibilized blends decreased with increasing rHDPE content, whereas these properties were significantly enhanced when HDPE-g-DMAE was used compared with HDPE-g-MA compatibilizer and with uncompatibilized blends. Scanning electron (SEM) micrographs of the fractured surfaces when using HDPE-g-DMAE showed improvement in the interfacial adhesion and interaction between recycled and virgin polyethylene. The nanocomposites compatibilized with PE-g-DMAE had better clay exfoliation-intercalated structure compared to PE-g-MA-compatibilized nanocomposites. The novelty of this work is based on the use of PE-g-DMAE as a compatibilizer in HDPE/rHDPE/nanoclay composites with improved mechanical properties. This compatibilizer promoted the adhesion between recycled and virgin polymer phases in the blend and increased the interactions between compatibilizer and hydroxyl groups on the clay surface, as well as oxidized groups in the recycled polymer. This indicates that recycled postconsumer HDPE could replace, in larger proportions, part of the virgin HDPE for certain applications with better mechanical performance than uncompatibilized blends. This is an option to bring recycled plastics back into the market and increase the versatility of products manufactured with recycled polymers.
机译:研究了高密度聚乙烯接枝胺醇(HDPE-G-DMAE)作为增容剂对纳米粘土增强的聚乙烯/聚乙烯后消费后再生共混物(HDPE / RHDPE)的机械,流变和形态特性的影响。评估具有高RHDPE含量,超过60%(WT)的RHDPE的HDPE融合。 HDPE瓶子被手动与城市固体废物分离,洗涤,研磨,最终用原始HDPE和纳米粘土的各种浓度混合。将该HDPE-G-DMAE与常规聚乙烯马来酸酐(HDPE-G-MA)相容剂进行比较。 FTIR表征证实了这种HDPE-G-DMAE增容剂的形成。随着RHDPE含量的增加,未键入的共混混合物的机械性能降低,而当使用HDPE-G-MA增容剂和未键入的共混混合物时,使用HDPE-G-DMAE时,这些性质显着提高。使用HDPE-G-DMAE时裂缝表面的扫描电子(SEM)显微照片显示出改善再循环和维珍聚乙烯之间的界面粘附和相互作用。与PE-G-MA-相容的纳米复合材料相比,用PE-G-DMAE与PE-G-DMAE相容的纳米复合材料具有更好的粘土剥离嵌入结构。该作品的新颖性是基于使用PE-G-DMAE作为Comatibilizer的HDPE / RHDPE /纳米粘土复合材料,其具有改善的机械性能。该增容剂促进了共混物中再循环和原始聚合物相之间的粘附性,并增加了粘土表面上的相容剂和羟基之间的相互作用,以及再循环聚合物中的氧化基团。这表明回收后的PostConsumer HDPE可以在更大的比例中替换,其中某些应用程序的某些应用程序,具有更好的机械性能而不是未致残的混合物。这是将再循环塑料带回市场的选项,并增加用再循环聚合物制造的产品的多功能性。

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