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The Effects of Carbon Nanofiber on the Mechanical Properties of Glass/Coir Fiber Reinforced Polyester Hybrid Composites

机译:碳纳米纤维对玻璃/基准纤维增强聚酯杂交复合材料力学性能的影响

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Glass and coir fiber hybrid composites were characterized for the addition of 0.1, 0.5, and 1 wt% functionalized fCNFs produced from waste coal fly-ash and were used also as secondary reinforcements for producing both glass and coir fiber composites. Before choosing the hybrid composites fabrication parameters, an optimum fiber mass fraction of glass and coir fibers were obtained by fabricating and mechanically testing the composites specimens with mass fraction of 24, 32, and 40 wt% for glass and 10, 15, and 20 wt% for coir fibers, respectively. From the test results, the glass fiber composites with 32 wt% and coir fiber composites with 15 wt% were found to be the most suitable mass fraction for fabricating the hybrid composites. Based on the functionalization results, the surface-treated CNFs for 6 hr in an acid solution were the best secondary reinforcement in fabricating glass and coir fiber hybrid composites. The hybrid composites testing results showed that both glass and coir fiber hybrid composites reinforced with 0.5 wt% functionalized CNFs were better than those of 0.1 and 1 wt% of CNFs. At higher weight fraction of 1 wt% CNFs, agglomerations could not be prevented and this led to poor mechanical properties. It could also be concluded that the functionalization of these CNFs improved their dispersion within the matrix and resulted in better mechanical properties. One of the future recommendations is that the researchers must focus on utilizing the waste products for producing carbon nanoparticles which could further be used for manufacturing hybrid composites. (C) 2016 Society of Plastics Engineers
机译:玻璃和椰壳纤维混杂复合材料的特征是添加0.1、0.5和1 wt%的功能化FCNF,这些FCNF由废粉煤灰制成,还用作生产玻璃和椰壳纤维复合材料的二次增强材料。在选择混杂复合材料的制造参数之前,通过制造和机械测试质量分数分别为24%、32%和40%的玻璃和10%、15%和20%的椰壳纤维的复合材料试样,获得了玻璃和椰壳纤维的最佳纤维质量分数。从试验结果来看,32%的玻璃纤维复合材料和15%的椰壳纤维复合材料是制备混杂复合材料最合适的质量分数。基于功能化结果,在酸性溶液中表面处理6小时的CNF是制备玻璃和椰壳纤维混杂复合材料的最佳二次增强体。混杂复合材料测试结果表明,0.5%功能化碳纤维增强的玻璃纤维和椰壳纤维混杂复合材料均优于0.1%和1%的碳纤维增强的玻璃纤维和椰壳纤维混杂复合材料。在1 wt%CNF的较高重量分数下,无法防止团聚,这导致机械性能较差。还可以得出结论,这些CNF的功能化改善了它们在基体中的分散性,并导致更好的机械性能。未来的建议之一是,研究人员必须将重点放在利用废物生产碳纳米颗粒上,这些纳米颗粒可以进一步用于制造混合复合材料。(C) 2016年塑料工程师学会

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  • 来源
    《Polymer Composites》 |2018年第2期|共11页
  • 作者单位

    Univ Witwatersrand Sch Mech Ind &

    Aeronaut Engn DST NRF Ctr Excellence Strong Mat Private Bag 3 ZA-2050 Johannesburg South Africa;

    Univ Witwatersrand Sch Mech Ind &

    Aeronaut Engn DST NRF Ctr Excellence Strong Mat Private Bag 3 ZA-2050 Johannesburg South Africa;

    Univ Witwatersrand Sch Mech Ind &

    Aeronaut Engn DST NRF Ctr Excellence Strong Mat Private Bag 3 ZA-2050 Johannesburg South Africa;

    Univ Witwatersrand Sch Chem DST NRF Ctr Excellence Strong Mat Private Bag 3 ZA-2050 Johannesburg South Africa;

    Univ Witwatersrand Sch Chem DST NRF Ctr Excellence Strong Mat Private Bag 3 ZA-2050 Johannesburg South Africa;

    Univ Witwatersrand Sch Mech Ind &

    Aeronaut Engn DST NRF Ctr Excellence Strong Mat Private Bag 3 ZA-2050 Johannesburg South Africa;

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  • 正文语种 eng
  • 中图分类 增强塑料、填充塑料;
  • 关键词

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