Synthesis and characterization of biocomposites based polypropylene/thermoplastic starch- reinforced with natural STIPA TENACISSIMA fibers and PP-g-MA

Amel Samia Chabira, C. Bouremel, A. Sakri, A. Boutarfaia
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Abstract

The current work aims to develop environmentally friendly plastic materials by preparing a composite polypropylene/thermoplastic starch (PP/TPS) using a melt-compounding process. In order to improve the compatibility of the two naturally incompatible polymers, natural Stipa tenacissima fibers treated on their surfaces and polypropylene (PP) pellets grafted with Maleic Anhydride (MA) were added to the mixture (PP and TPS). The mixture was then prepared using the melt-mixing method in various concentrations. X-ray diffraction (XRD), scanning electron microscopy (SEM), thermogravimetric analysis (TGA)/Differential thermal analysis (DTA), and mechanical tensile tests were then used to characterize the various formulations. SEM images revealed that the addition of (PP-g-MA) and natural fibers resulted in good starch plasticization and higher thermoplastic starch dispersion in the polypropylene matrix. It was also discovered that increasing the TPS concentration over the PP concentration tends to reduce the mechanical tensile properties. However, the composite with 15% TPS had the best mechanical properties. The thermogravimetric analysis (TGA) results revealed that the organic filler used acted as a reinforcing agent, increasing the thermal stability of the polypropylene/thermoplastic starch (PP/TPS) compound.
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天然STIPA TENACISSIMA纤维和PP-g-MA增强聚丙烯/热塑性淀粉生物复合材料的合成与表征
目前的工作旨在利用熔融复合工艺制备聚丙烯/热塑性淀粉复合材料(PP/TPS),以开发环保塑料材料。为了改善两种天然不相容聚合物的相容性,将表面处理过的天然刺茅纤维和接枝马来酸酐(MA)的聚丙烯(PP)球团添加到PP和TPS混合物中。然后用熔体混合法制备不同浓度的混合物。然后用x射线衍射(XRD)、扫描电镜(SEM)、热重分析(TGA)/差热分析(DTA)和机械拉伸试验对各种配方进行表征。SEM图像显示,(PP-g-MA)和天然纤维的加入使淀粉在聚丙烯基体中有良好的增塑性和较高的热塑性淀粉分散性。TPS浓度大于PP浓度会降低材料的力学拉伸性能。而TPS含量为15%的复合材料力学性能最好。热重分析(TGA)结果表明,有机填料作为补强剂,提高了聚丙烯/热塑性淀粉(PP/TPS)复合材料的热稳定性。
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