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Effects of sol-gel modification on the interfacial and mechanical properties of sisal fiber reinforced polypropylene composites

机译:溶胶 - 凝胶改性对Sisal纤维增强聚丙烯复合材料界面和力学性能的影响

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In order to prepare high performance sisal fiber reinforced polypropylene composites, this paper pays special attention to the changes of intrinsic mechanical properties of the sisal fiber so as to achieve the maximum reinforcing effect of the fiber. For achieving this aim, the sisal fibers were modified by tetraethylorthosilicate (TEOS) sol-gel method to form SiO2-based organic-inorganic hybrid materials. For a better result, a novel combined modification method by TEOS precursor solution and gamma-aminopropyltriethoxysilane solution for the fibers was put forward and performed. Then the relevant mechanism was also analyzed in detail. The corresponding composites were prepared by melt blending with polypropylene matrix and polypropylene-graft-maleic anhydride (MAPP) compatibilizer, and the interfacial and mechanical properties of composites were studied by single fiber fragmentation test and mechanical test, respectively. The results show that the mechanical and thermal properties of the modified fiber composites are improved compared with the untreated fiber composite. The combined modification composite presents the highest interfacial shear strength, which increases by 259.49% compared with the untreated fiber composite. A good interfacial bonding is obviously observed in the combined modification composite by the analysis of scanning electron microscope (SEM). The tensile strength and modulus of the composite with the combined treatment (20 wt% fiber loading) increase by 21.72% and 28.18%; the flexural strength and modulus increase by 3.61% and 16.02%; and the impact strength increases by 21.28%.
机译:为了制备高性能Sisal纤维增强聚丙烯复合材料,本文特别注意剑麻纤维的内在力学性能变化,以实现纤维的最大增强效果。为了实现该目的,通过四乙酯硅酸盐(TEOS)溶胶 - 凝胶法改性Sisal纤维以形成SiO 2的有机无机杂化材料。为了更好的结果,提出并进行了用于纤维的TEOS前体溶液和γ-氨基丙基三乙氧基硅烷溶液的新型改性方法。然后还详细分析了相关机制。通过用聚丙烯基质和聚丙烯 - 移植物 - 马来酸酐(MAPP)复合剂的熔融共混制备相应的复合材料,并通过单纤维碎片试验和机械测试来研究复合材料的界面和机械性能。结果表明,与未处理的纤维复合材料相比,改善了改性纤维复合材料的机械和热性能。合并的改性复合材料具有最高的界面剪切强度,与未处理的纤维复合材料相比,增加了259.49%。通过分析扫描电子显微镜(SEM),在组合改性复合材料中显然观察到良好的界面键合。复合材料的拉伸强度和模量随着组合处理(20wt%纤维负载)增加21.72%和28.18%;弯曲强度和模量增加3.61%和16.02%;冲击力量增加21.28%。

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