Characterization and Properties of Durian Skin Fiber Filled Polylactic Acid/Polypropylene Compatibilized with Glut Palmitate Salt

Sarina Mohamad
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Abstract

PLA matrix provides good mechanical, physical and degradability properties, but somehow PLA alone is not good enough to produce a product as PLA has poor toughness resulting a brittle material. Natural fiber such as Durian skin fiber (DSF) can be incorporated into PLA/PP as a biopolymer to achieve the desired properties and better degradation which resulting a good bio-composite. Therefore, the study was carried out to produce bio-composite of DSF filled with PLA/PP and glut palmitate (GP) salt as compatibilizer. The bio-composites was successfully developed using different filler (DSF) loadings (0 php, 15 php, 30 php, 45 php and 60 php) with melt mixing blending. The FTIR analysis showed the new peak existed at 1595 cm-1 revealed a good interaction in the composite system which come from the bending of NH2 vibration from GP. The mechanical properties (tensile properties) and physical properties (water absorption ability and density) of prepared bio-composite were determined. Increasing of DSF filler loading to 60 php DSF in PLA/PP bio-composite with the addition of GP increased in tensile strength (5.06 ± 0.09 MPa) and elongation at break (3.74 ± 0.18%) due to enhanced interfacial bonding and strong adhesion between the polymer matrix and the filler due to the presence of compatibilizer. However, increased filler loading to 60 php DSF, showed a decreasing trend in the tensile modulus which represents high flexibility of the bio-composites. Furthermore, PLA/PP/DSF bio-composites absorption of water increases with the increasing filler loading until it reaches at saturation point. The study concludes that the DSF reinforced PLA/PP with the addition of GP was suitable to be used in the production of bioplastic by many industries which can promote a sustainable environment for society.
棕榈酸盐增容聚乳酸/聚丙烯填充榴莲皮纤维的表征及性能研究
PLA基体提供了良好的机械、物理和可降解性能,但由于PLA韧性差,导致材料脆性,因此单独PLA不足以生产产品。将天然纤维如榴莲皮纤维(DSF)作为生物聚合物掺入PLA/PP中,可以获得理想的性能和更好的降解性,从而得到良好的生物复合材料。为此,研究了以聚乳酸/聚丙烯(PLA/PP)填充DSF,并以过量棕榈酸盐(GP)为相容剂制备DSF生物复合材料。采用不同的填料(DSF)掺量(0 php、15 php、30 php、45 php和60 php)与熔体混合共混制备了生物复合材料。FTIR分析表明,在1595 cm-1处有一个新的峰,表明复合体系中有良好的相互作用,这是由GP产生的NH2振动的弯曲引起的。测定了制备的生物复合材料的力学性能(拉伸性能)和物理性能(吸水能力和密度)。在PLA/PP生物复合材料中加入GP后,DSF的抗拉强度(5.06±0.09 MPa)和断裂伸长率(3.74±0.18%)均有所提高,这是由于增容剂的存在增强了聚合物基体与填料之间的界面结合和强附着力。然而,当填充量增加到60 php DSF时,拉伸模量呈下降趋势,表明生物复合材料具有较高的柔韧性。此外,PLA/PP/DSF生物复合材料的吸水率随着填料量的增加而增加,直到达到饱和点。研究结果表明,添加GP的DSF增强PLA/PP可广泛应用于生物塑料的生产,促进社会环境的可持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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