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Effect of Carbon Nanostructures and Fatty Acid Treatment on the Mechanical and Thermal Performances of Flax/Polypropylene Composites

机译:碳纳米结构和脂肪酸处理对亚麻/聚丙烯复合材料的机械和热性能的影响

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摘要

Four different strategies for mitigating the highly hydrophilic nature of flax fibers were investigated with a view to increase their compatibility with apolar polypropylene. The effects of two carbon nanostructures (graphene nanoplatelets (GNPs) and carbon nanotubes (CNTs)), of a chemical modification with a fatty acid (stearic acid), and of maleated polypropylene on interfacial adhesion, mechanical properties (tensile and flexural), and thermal stability (TGA) were compared. The best performance was achieved by a synergistic combination of GNPs and maleated polypropylene, which resulted in an increase in tensile strength and modulus of 42.46% and 54.96%, respectively, compared to baseline composites. Stearation proved to be an effective strategy for increasing the compatibility with apolar matrices when performed in an ethanol solution with a 0.4 M concentration. The results demonstrate that an adequate selection of surface modification strategies leads to considerable enhancements in targeted properties.
机译:用于减轻亚麻纤维的亲水性高的性质四个不同的策略,以便进行了研究,以增加它们与非极性聚丙烯的相容性。两个碳纳米结构()CNT)的石墨烯纳米薄片(GNP的和碳纳米管()与脂肪酸(硬脂酸),和对界面粘合性,机械性能(拉伸强度和弯曲),和马来酸化聚丙烯的影响,化学修饰的热稳定性(TGA)进行了比较。最好性能通过的GNP和马来酸化聚丙烯的协同组合,这导致增加了拉伸强度和分别42.46%和54.96%,模量,与基线相比,复合材料来实现。 Stearation被证明是一种用于与0.4M的浓度的乙醇溶液中进行时增加与非极性基质的相容性的有效策略。结果表明,表面改性策略,因而在有针对性的性能有了较大的增强的充分选择。

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