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首页> 外文期刊>Waste and biomass valorization >Modification of Diss Fibers for Biocomposites Based on Recycled Low-Density Polyethylene and Polypropylene Blends
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Modification of Diss Fibers for Biocomposites Based on Recycled Low-Density Polyethylene and Polypropylene Blends

机译:基于再生的低密度聚乙烯和聚丙烯共混物的生物复合材料的粉末纤维改性

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The aim of this work is the valorization of diss fibers with recycled and regenerated low-density polyethylene (rLDPE) for the development of biocomposites based on blends of rLDPE polypropylene (PP) and diss fibers. The diss fibers were characterized by laser granulometer and FTIR spectroscopy. Two PP/rLDPE blends of different compositions (50/50 and 75/25) were prepared. These polymer blends were reinforced by nano-Si particles and compatibilizers which were investigated using three compatibilizers: maleic anhydride functionalized ethylene copolymer rubber (MAC), maleic anhydride functionalized ethylene copolymer rubber/SiO2 (MAC/SiO2), and maleic anhydride functionalized ethylene copolymer rubber/SiO2/ionic liquid (MAC/SiO2/IL). The thermal properties of the blends were studied using differential scanning calorimetry and thermogravimetric analysis. Their crystallinity was investigated by X-ray diffraction and their morphology by scanning electron microscopy, while mechanical properties were evaluated by tensile testing. The best tensile properties were obtained for the PP/rLDPE (75/25) blend. A significant increase of the Young's modulus, stress at break, and elongation at break was obtained with the three compatibilizers. MAC acted as a compatibilizer of both polymers, resulting in improved interfacial adhesion which increased tensile properties. Finally, the effect of diss fiber surface modification on the properties of PP/rLDPE blends was considered. The results showed a modification of tensile properties and a satisfactory interfacial adhesion between diss fibers and polymer blends. Furthermore, thermal stability was not significantly decreased by the addition of 5 wt% diss fibers.
机译:这项工作的目的是,基于RLDPE聚丙烯(PP)的共混物和粉末纤维的共混物,具有再循环和再生低密度聚乙烯(RLDPE)的糖纤维的储存。通过激光粒度计和FTIR光谱表征帕纤维。制备不同组成的两种PP / RLDPE混合物(50/50和75/25)。通过使用三种增容剂研究的纳米Si颗粒和增容剂加强了这些聚合物共混物:马来酸酐官能化乙烯共聚物橡胶(MAC),马来酸酐官能化乙烯共聚物橡胶/ SiO 2(Mac / SiO 2)和马来酸酐官能化乙烯共聚物橡胶/ SiO2 /离子液体(Mac / SiO 2 / IL)。使用差示扫描量热法和热重分析研究了共混物的热性能。通过扫描电子显微镜通过X射线衍射研究它们的结晶度及其形态,而通过拉伸试验评估机械性能。为PP / RLDPE(75/25)共混物获得最佳拉伸性能。用三种增容剂获得杨氏模量,断裂应力和断裂伸长的显着增加。 MAC作为两种聚合物的相容剂,导致改善的界面粘附增加,该粘连增加了拉伸性能。最后,考虑了纤维表面改性对PP / RLDPE共混物性能的影响。结果表明拉伸性能的改性和帕纤维和聚合物共混物之间的令人满意的界面粘附。此外,通过添加5wt%含量纤维,热稳定性不会显着降低。

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